Member

Name 王國禎/Gou-Jen Wang
Title 特聘教授
Education Ph.D., Mechanical Engineering, UCLA
Office Phone 04-2284-0725 ext.320
Office 機械系館3樓 P320
Email gjwangdragon.nchu.edu.tw
Division 系統控制組
Laboratory 應科大樓4樓 AT434
Laboratory Phone 04-2284-0165 ext.4341
Website 奈微米系統實驗室
Research Expertise 生醫感測、奈微米系統、組織工程與再生醫學
  • UCLA Mechanical Engineering 博士(1986/09~1991/06)
  • UCLA Mechanical Engineering 碩士(1984/09~1986/06)
  • National Taiwan University Mechanical Engineering 學士(1977/09~1981/06)
  • 美國機械工程師協會(ASME)會士
  • 院長/中興大學工學院
  • 特聘教授/機械工程學系
  • 合聘教授/生醫工程研究所
#標題
12023 未來科技獎- 全方位 SERS 檢測平台 CSDP-生醫和食安應用
22022國家新創獎-齒舌蘭輪斑病毒和蕙蘭嵌紋病毒之二合一檢測晶片
32022國家新創獎-具三微電漿熱點之訊號增強晶片 (與張建忠教授團隊)
42020 科技部 未來科技突破獎- 鉑/金奈米合金電極於中性無酵素葡萄糖檢測與生物燃料電池之雙效應用
52019 科技部 傑出研究獎
62019 (16th)國家新創獎 新創精進獎- 無酵素葡萄糖檢測晶片
72018 (15th)國家新創獎 最佳產業應用獎- 高靈敏齒舌蘭輪斑病毒之快篩晶片(與興大農資學院、昇陽國際半導體組隊參賽)
82017 (14th)國家新創獎 臨床新創獎- 精準醫療之快速檢測塵螨過敏基因(與台中榮總醫院-蔡肇基醫師團隊組隊參賽)
92016 (13th)國家新創獎 最佳產業效益獎 無酵素葡萄糖檢測晶片(與昇陽國際半導體組隊參賽)
102016 (13th)國家新創獎 學研新創獎- 移植胜肽標定粒線體胞器治療粒線體疾病(與彰化基督教醫院-劉青山副院長團隊組隊參賽)
112016 (13th)國家新創獎 臨床新創獎-用於檢測或/及定量B型肝炎病毒之平台及其方法(與台中榮總醫院-吳俊穎醫師團隊組隊參賽)
122016 (13th)國家新創獎 企業初創獎- 瑞霸生技股份有限公司
132016 全研科技論文獎 金研獎 Structural coloration polymer labels based on photonic crystal grating
142015 臺灣綜合大學系統年輕學者創新研發成果 (博士後研究員許哲瑋) 佳作 以簡易微影熱熔製程製作之高靈敏度無酵素葡萄糖生醫檢測晶片
15Fellow (2017/12) American Society of Mechanical Engineers(ASME)
16IAAM Medal for the year 2017 International Association of Advanced Materials (IAAM)

期刊論文

#標題
1Ting, Y. C., Lin, Y. T., and Wang, G. J.*, A novel anode of gold nanoparticle coated Au nanorod arrays for nonenzymatic glucose fuel cells, Journal of Power Sources, accepted, 2023. (IF=9.2)
2Sahoo, S. R., Huang, C. T., Tsai, K., Wang, G. J.*, Chang, C. C.*, A multiscale 3D hotspot-rich nanostructured substrate for biomolecular detection of SARS-CoV-2, Appl. Phys. Rev. 10, 041403, 2023. (IF=15)
3Tseng, C. C., Lin, Y. T., and Wang, G. J.*, An electrochemical HbA1c immunosensor with a simple electrode of gold nanoparticle monolayer, IEEE Sensors Journal, 23 (15), 16579-16584, 2023. (IF=4.3)
4Lina, Y. T., Tung, Y. T., Wong, J. Y., and Wang, G. J.*, Fabrication of perfusable microvessel networks by mimicking in vivo vasculogenesis using a novel scaffold-wrapping method, Materials and Design, 227, 111707, 2023. (IF=9.417), https://doi.org/10.1016/j.matdes.2023.111707.
5Chung, P. M., Lin, Y. T., and Wang, G. J.*, Au/Ni coaxial nanopillar microarray electrodes for red blood cell concentration detection, IEEE Sensors Journal, 23(5), 4694-4699, 2023. (IF=4.325) https://doi.org/10.1109/JSEN.2021.3102084.
6Thao, D. H. V., Weng, W. T., Hieu, N. V., Chang, C. C.**, and Wang, G. J.*, A flexible and stretchable photonic crystal film with sensitive structural color-changing properties for spoiled milk detection, Food Chemistry-x, 16, 100526, 2022. (IF=6.443)
7Sahoo, R.S., Hsu, S. H. J., Chou, D. A., Wang, G. J.*, Chang, C. C.*, Surface plasmon-enhanced fluorescence and surface-enhanced Raman scattering dual-readout chip constructed with silver nanowires: Label-free clinical detection of direct-bilirubin, Biosensors and Bioelectronics, 213, 114440, 2022. (IF=12.545)
8Wang, W. J., Chou, M. C., Lee, Y. J., Hsu, W. L.**, and Wang, G. J.*, A simple electrochemical immunosensor based on a gold nanoparticle monolayer electrode for neutrophil gelatinase-associated lipocalin detection, Talanta, 246, 123530, 2022. (IF=6.556)
9Chou, C. C., Lin, Y. T., Kuznetsova, I., and Wang, G. J.*, Genetically modified soybean detection using a biosensor electrode with a self-assembled monolayer of gold nanoparticles, Biosensors, 12, 207, 2022. (IF=5.743)
10Wang, B. Y., Gu, B. C., Wang, G. J., Yang, Y. H., and Wu, C. C*., Detection of amyloid- (1-42) aggregation with a nanostructured electrochemical sandwich immunoassay biosensor, Frontiers in bioengineering and biotechnology, 10, 853947, 2022. (IF=6.064)
11Lin, W. P., Wang, W. J., Lee, C. H., Jan, F. J. **, and Wang, G. J.*, A two-in-one immunoassay biosensor for the simultaneous detection of Odontoglossum ringspot virus and Cymbidium mosaic virus, Sensors and Actuators B: Chemical, 350, 130875, 2022. (IF=9.221)
12Lin, F. Y., Lee, P. Y., Chu, T. F., Peng, C. Y., and Wang, G. J.*, Neutral nonenzymatic glucose biosensors based on electrochemically deposited Pt/Au nanoalloy electrodes, International Journal of Nanomedicine, 16, 5551-5563, 2021. (IF=7.033)
13Li, C. Y., Hsu, S. H. J., Chang, C. C.**, and Wang, G. J.*, Direct bilirubin detection using surface-enhanced raman spectroscopy, IEEE Sensors Journal, 21, 21458-21464, 2021. (IF=4.325)
14Chen, L. D., Wang, W. J., and Wang, G. J.*, Electrochemical detection of electrolytes using a solid-state ion-selective electrode of single-piece type membrane, Biosensors, 11, 109, 2021. (IF=5.743)
15Chu, T. F., Lin, F. Y, Kuznetsova, I., and Wang, G. J.*, A novel neutral non-enzymatic glucose biofuel cell based on a Pt/Au nano-alloy anode, Journal of Power Sources, 486, 229374, 2021. (IF=9.794) 台-俄國際合作
16Liu, Z. J., Lin, S. C., Lee, P. Y., Lin, Y. T., Lai, Z. L., Chang, C. C.**, and Wang, G. J.*, Dual-acting antibacterial porous chitosan film embedded with a photosensitizer, Science and Technology of Advanced Materials, 21(1), 562-572, 2020. (IF=7.821)
17Chu, T. F., Rajendran, R., Kuznetsova, I., and Wang, G. J.*, High-power, non-enzymatic glucose biofuel cell based on a nano/micro hybrid-structured Au anode, Journal of Power Sources, 453, 227844, 2020. (IF=9.794) 台-俄國際合作
18Alvarez-Elizondo, M. B., Li, C. W., Marom, A., Tung, Y. T., Drillich, G., Horesh, Y., Lin, S. C., Wang, G. J.*, Weihs, D.*, Micropatterned topographies reveal measurable differences between cancer and benign cells, Medical Engineering & Physics, 75, 5-12, 2020. (IF=2.356) 台-以國際合作
19Wang, W. J., Lee, C. H., Li, C. W., Liao, S., Jan, F. J.**, and Wang, G. J.*, Orchid virus detection from orchid leaves using micro/nano hybrid-structured immuno-electrochemical biosensor, J. Electrochemical Society, 167, 027530, 2020, (IF=4.386) 產學合作
20Lin, Y. T., Chen, S. T., Chang, J. C., Toeh, R. J., Liu, C. S.**, Wang, G. J.*, Green extraction of healthy and chemical free mitochondria with a conventional centrifuge, Lab on a Chip, 19, 3862-3869, 2019. (IF=7.519)
21Su, C. H., Chen, J. W., Chen, L. D., Chang, J. C., Liu, C. S., Chang, C. C.*, and Wang, G. J.*, Organic Small Molecule for Detection and Photodegradation of Mitochondrial DNA Mutations, Journal of Materials Chemistry B, 39 (7), 5947-5955, 2019. (IF=7.571)
22Tung, Y. T., Liang, J. J., Feng, H. T., Jhang, R. N., Hsieh, S. L., Lin, Y. L.*, Wang, G. J.*, Investigation of the extremely weak interaction between the Japanese Encephalitis virus and CLEC5A using a multivalent-interaction-enhancement sensing electrode, Biosensors and Bioelectronics: x, 2, 100024, 2019. (IF=12.545)
23Plekhanova, V., Tikhonenko, S. A., Dubrovsky, A., Kim, A., Musin, E., Wang, G. J., Kuznetsova, I., Kolesov, V., Reshetilov, A., Comparative study of the electrochemical sensors based on enzyme immobilized into polyelectrolyte microcapsules and into chitozan gel, Analytical Science, 35 (9), 1037-1043, 2019. (IF=1.967) 台-俄國際合作
24Lin, Y. C., Liao, S., Huang, T., and Wang, G. J.*, A novel biosensor electrode with self-assembled monolayer of gold nanoparticle on a micro hemisphere array, J. Electrochemical Society, 166 (6) B349-B354, 2019, (IF=4.386)
25Reshetilov, A., Plekhanova, Y., Tarasov, S., Tikhonenko, S., Dubrovsky, A., Kim, A., Kashin, V., Machulin, A., Wang, G. J., Kolesov, V., Kuznetsova, I., Bioelectrochemical properties of enzyme-containing multilayered polyelectrolyte microcapsules modified with multiwalled carbon nanotubes, Membranes, 9 (4), 53, 2019. (IF=4.562) 台-俄國際合作
26Hsiao, Y. H., Li, C. H., Chang, J. C, Liu, C. S.*, Wang, G. J.*, Chemical-free extraction of functional mitochondria using a microfluidic device, Inventions, 3, 68 (11 pages), 2018.
27Jian, Y. S., Lee, C. H., Jan, F. J**, and Wang, G. J.*, Detection of odontoglossum ringspot virus infected phalaenopsis using a nano-structured biosensor, J. Electrochemical Society, 165 (9) H449-H454, 2018, (IF=4.386)
28Wu, C. T. and Wang, G. J., Design and manufacture of high-filling-efficiency microfluidic devices, International Journal of Advanced Manufacturing Technology, 97, 5-8, pp 1711-1717, 2018. (IF=3.563)
29Peng, C. Y., Hsu, C. W., Li, C. W., Wang, P. L., Jeng, C. C., Chang, C. C.**, Wang, G. J.*, A flexible photonic crystal material for multiple anti-counterfeiting applications, ACS Applied Materials & Interfaces, 10 (11), 9858-9864, 2018. (IF=10.383)
30Tseng, Y. T., Li, C. W., and Wang, G. J.*, Template-assisted fabrication of tunable aspect ratio, biocompatible iron oxide pillar arrays, Advanced Materials Letter, 9(4), 249-257, 2018.
31Cai, S. J., Li, C. W., Weihs, D., and Wang, G. J.*, Control of cell proliferation by a porous chitosan scaffold with multiple releasing capabilities, Science and Technology of Advanced Materials, 18(1), 987-996, 2017. (IF=7.821)
32Yeh, B. Y., Jian, B. S., Wang, G. J., and Tseng, W. J., CuO/V2O5 hybrid nanowires for highly sensitive and selective H2S gas sensor, RSC Adv., 7, 49605, 2017. (IF=3.361)
33Peng, C. Y., Hsu, C. W., Li, C. W., Wang, G. J.*, Using anodic aluminum oxide film and nanoimprint to produce polymer anti-counterfeit labels, Smart Science, 5(3), 117-122, 2017.
34Shen, M. C., Lai, J. C., Hong, C. Y., and Wang, G. J.*, Electrochemical aptasensor for detecting Der p2 allergen using polycarbonate-based double-generation gold nanoparticle chip, Sensing and Bio-Sensing Research, 13, 75-80, 2017
35Tung, Y. T., Chang, C. C., Ju, J. C.*, and Wang, G. J.*, Fabrication of a reticular poly(lactide-co-glycolide) cylindrical scaffold for the in vitro development of microvascular networks, Science and Technology of Advanced Materials, 18(1), 163-171, 2017. (IF=7.821)
36Peng, S. W., Li, C. W., Chiu, I. M., and Wang, G. J.*, Nerve guidance conduit with a hybrid structure of a PLGA microfibrous bundle wrapped in a micro/nanostructured membrane, Inter. J. Nanomedicine, 12, 421-432, 2017. (IF=7.033)
37Li, C. W., Pan, W. T., Ju, J. C., Wang, G. J.*, An endothelial cell conditioned medium embedded in porous PLGA scaffold for the enhancement of mouse embryonic stem cell differentiation, Biomedical Materials, 11, 025015, 2016. (IF=4.103)
38Ciudad, P, Dower, R , Nicoli, F , Orfaniotis, G, Maruccia, M , Constantinescu, T , Lin, S. P., Wang, G. J.*, Chen, H. C., Pelvic-perineal reconstruction with the combined transverse upper gracilis and profunda artery perforator (TUG-PAP) flap, Journal of Plastic Reconstructive and Aesthetic Surgery, 69(4), 573-575, 2016. (IF=3.022)
39Hsu, C. W., Su, F. C., Peng, P. Y., Young, H. T., Liao, S., and Wang, G. J.*, Highly sensitive non-enzymatic electrochemical glucose biosensor using a photolithography fabricated micro/nano hybrid structured electrode, Sensors and Actuators B, 230, 559-565, 2016. (IF=9.221)
40Lin, Y. T., Li, C. W., and Wang, G. J.*, The nano/micro hybrid structures enhancing B35 cell guidance on chitosan, ASME Journal of Nanotechnology in Engineering and Medicine, 6, 030702, 2016.
41Chang, C. Y., Sasaki, M., Kumagai, S., and Wang, G. J.*, Design of microplasma electrodes for plasma-on-chip devices, Journal of Physics D, Applied Physics, 49, 155203, 2016. (IF=3.409)
42Chen, C. C., Lai, Z. L., Wang, G. J.*, and Wu, C. Y.**, Polymerase chain reaction-free detection of hepatitis B virus DNA using a nanostructured impedance biosensor, Biosensors & Bioelectronics, 77, 603-608, 2016. (IF=12.545)
43Tung, Y. T., Chang, C. C.*, Y. L. Lin, Hsieh, S. L., and Wang, G. J.*, Development of double-generation gold nanoparticle chip-based dengue virus detection system combining fluorescence turn-on probes, Biosensors & Bioelectronics, 77, 90-98, 2016. (IF=12.545)
44Lee, B. Y., Li, C. W. and Wang, G. J.*, Nanoporous anodic aluminum oxide tube encapsulating a microporous chitosan/collagen composite for long-acting drug release, Biomedical Physics & Engineering Express, 1, 045004, 2015.
45Liao, E. C, Chang, C. Y., Wu, C. C., Wang, G. J., Tsai, J. W., Association of single nucleotide polymorphisms in the MD-2 gene promoter region with Der p 2 allergy, Allergy Asthma Immunol Res. 7(3), 249-255, 2015.
46Hsu, C. W., Feng, W. C., Su, F. C., and Wang, G. J.*, A novel electrochemical glucose biosensor with a silicon nanowire array electrode, J. Electrochemical Society, 162(10), B1-B5, 2015.
47Hsieh, Y. D., Lee, M. Y., and Wang, G. J.*, Sb2S3 quantum-dot sensitized solar cells with silicon nanowire photoelectrode, Inter. J. of Photoenergy, Vol. 2015, Article ID 213858, 2015.
48Hsu, C. W. and Wang, G. J.*, Highly sensitive glucose biosensor based on Au–Ni coaxial nanorod array having high aspect ratio, Biosensors & Bioelectronics, 56, 204-209, 2014.
49Tung, Y. T., Wu, M. F., Wang, G. J.*, and Hsieh, S. L**, Nanostructured electrochemical biosensor for the detection of the weak binding between the Dengue Virus and the CLEC5A receptor, Nanomedicine: NBM, 10, 1335-1341, 2014.
50Wu, C. C.*, Ku, B. C., Ko, C. H., Chiu, C. C., Wang, G. J., Yang, Y. H., Wu, S. J., Electrochemical impedance spectroscopy analysis of A-beta (1-42) peptide using a nanostructured biochip, Electrochimica Acta, 134, 249-257, 2014.
51Chin, Y. T., Liao, E. C., Wu, C. C., Wang, G. J.*, and Tsai, J. J.*, Detection of the haplotype mutations of the MD-2 gene promoter associated with Der p2-induced allergy using a nanostructured biosensor, Inter. J. Nanomedicine, 9, 403-412, 2014.
52Liu, H. C. and Wang, G. J.*, Superior antireflection coating for a silicon cell with a micro-nano hybrid structure, Inter. J. of Photoenergy, Vol. 2014, 807812, 2014.
53Wu, J. Y., Li,C. W., Tsai, C. H., Chou, C. W., Chen, D. R., and Wang, G. J.*, Synthesis of antibacterial TiO2/PLGA composite biofilms, Nanomedicine: NBM, 10, 1097-1107, 2014.
54Hsu, C. W., Li, C. W. and Wang, G. J.*, Fabrication of biocompatible high aspect ratio Au–Ni coaxial nanorod arrays using the electroless Galvanic displacement reaction method, RSC advances, 4, 12127-12132, 2014.
55Tsai, Y. T., Chang, K. J., and Wang, G. J.*, Measurement and control of the ion diffusion coefficient in a nanochannel, Microsystem Technologies, 19, 937-944. (2013)
56Chung, I. C., Li, C. W., and Wang, G. J.*, The influence of different nanostructured scaffolds on fibroblast growth, Science and Technology of Advanced Materials, 14, 044401. (2013).
57Liu, H. C. and Wang, G. J.*, Fabrication of high anti-reflection nanowires on silicon using two-stage metal-assisted etching, Journal of Renewable and Sustainable Energy, 5, 053115. (2013).
58Chin, Y. T., Liao, E. C., Wu, C. C., Wang, G. J.*, and Tsai, J. J.*, Label-free detection of single-nucleotide polymorphisms associated with myeloid differentiation-2 using a nanostructured biosensor, Biosensors & Bioelectronics, 49, 506-511. (2013).
59Wang, H. W., Cheng, C. W., Li, C. W., Wu, P. H., and Wang, G. J.*, Hollow three-dimensional endothelialized microvessel networks based on femtosecond laser ablation, Biomedical Microdevices, 15, 879-885. (2013).
60Tsai, J. J., Liu, Y. F., Liao, E. C., Chen, J. L, and Wang, G. J.*, Reduction of incubation time and enhancement of analyte adhesion uniformity of impedance biosensors using microvibration method, Sensors & Actuators B: Chemical, 178, 404-411. (2013)
61Lin, Y. W. and Wang, G. J.*, Dielectrophoresis measurement of bovine endothelial cells adhesion on different materials, Microsystem Technologies, 19, 945-955. (2013)
62Tsai, C. C. and Wang, G. J.*, A glucose biosensor based on a 3D nanostructured gold electrode, J. Electrochemical Society, 160(1), B1-B5. (2013)
63Liu, H. C., Tsai, C. C. and Wang, G. J.*, Glucose biosensors based on a gold nanodendrite modified screen-printed electrode, Nanotechnology, 24, 215101. (2013).
64Chou, C. W.*, Hsieh, H. H., Chen, K. S., Hong-Ru Lin, H. R., Wang, G. J., Chang, H. C., Pan, Y. L., Wei, Y. S., Chang, K. S., and Harn, Y. W., Biopolymer coated gold nanocrystals prepared using the green chemistry approach and their shape-dependent catalytic and surface-enhanced Raman scattering properties, Physical Chemistry Chemical Physics, 15, 11275-11286. (2013).
65Li, C. W. and Wang, G. J.*, A material-independent cell–environment niche based on micro-reciprocating motion for cell growth enhancement, Biofabrication, 5, 045001. (2013).
66Book Chapter Lee, J. W. and Wang, G. J.*, “Tissue Scaffolding Devices,” MEMS for biomedical applications, Woodhead Publishing Limited, (2012, 07).
67Liu, Y. F., Tsai, J. J., Chin, Y. T., Liao, E. C., Wu, C. C., Wang, G. J.*, Detection of allergies using a silver nanoparticle modified nanostructured biosensor, Sensors & Actuators B: Chemical, 171-172, 1095-1100. (2012) (SCI, IF=5.667, 2/61)
68Chen, Y. S., Wu, C. C., Tsai, J. J., and Wang, G. J.*, An electrochemical impedimetric biosensor based on a nanostructured polycarbonate (PC) substrate, Inter. J. Nanomedicine, 7, 133-140 (2012)
69Wang, H. W., Cheng, C. W., Li, C. W., Chang, H. W., Wu, P. H., Wang, G. J.*, Fabrication of pillared PLGA microvessel scaffold using femtosecond laser ablation, Inter. J. Nanomedicine, 7, 1865-1873. (2012)
70Ho, J. Y. and Wang, G. J.*, Fabrication of high aspect ratio nanoporous array on silicon, Microsystem Technologies, 18, 1849-1856. (2012)
71Chang, C. Y. and Wang, G. J.*, Anodic Aluminum Oxide Diodes, Japanese Journal of Applied Physics, 50(7), 075201 (4 pages) (2011)
72Wang, G. J.*, Lee, M. W., Chen, W. Z., Chen, Y. H., Chien, M. C., Yu, M. C., A Metal-Solution Field-Effect-Transistor Enhanced Proton-Motive-Force Driving Photovoltaic, IEEE Trans. on Nanotechnology, 10, 191-196. Cover page (2011)
73Lin, Y. H., Chang, K. J., and Wang, G. J.*, A Novel Chip-on-Glass method for Slim LCD Packaging, Microsystem Technologies, 17, 685-691. (2011)
74Tsai, J. J., Bau, I. J., Chen, H. T., Lin, Y. T., and Wang, G. J.*, A novel nanostructured biosensor for the detection of the dust mite antigen Der p2, Inter. J. Nanomedicine, 6, 1201-1208. (2011)
75Tubtimtae, A., Lee, M. W.*, and Wang, G. J., Ag2Se quantum-dot sensitized solar cells for full solar spectrum light harvesting, Journal of Power Sources, 196, 6603-6608. (2011)
76Tubtimtae, A., Wu, K. L., Tung, H. Y., Lee, M. W.*, Wang, G. J., Ag2S quantum dot-sensitized solar cells, Electrochemistry Communications, 12, 1158-1160 (2010)
77Wang, C. G. and Wang, G. J.*, A MOSFET-like infrared sensor for the enhancement of photoconductivity and photoresponsivity, Current Nanoscience, 6(6), 648-653. (2010)
78Chen, G. Y., Lee, M. W., and Wang, G. J.*, Fabrication of Dye- Sensitized Solar Cells with A 3D Nanostructured Electrode, Inter. J. of Photoenergy, 2010, Article ID 585621, 7 pages, DOI:10.1155/2010/585621, (2010)
79Chen, Y. C., Chen, G. Y., Lin, Y. C., and Wang, G. J.*, A Lab-on-a-Chip Capillary Network for Red Blood Cell Hydrodynamics, Microfluidics and Nnaofluidics, 9, 585-591. (2010).
80Lai, M. H., Tubtimtae, A., Lee, M. W.*, Wang, G. J., ZnO-Nanorod Dye-Sensitized Solar Cells: New Structure without a Transparent Conducting Oxide Layer, Inter. J. of Photoenergy, 2010, Article ID 497095, 5 pages, , (2010)
81Hsu, C. W., Chou, Z. D., and Wang, G. J.*, Fabrication of High Aspect Ratio Alumina-Nickel Coaxial Nanorod Array by Electrodeposition, ASME/IEEE J. of Microelectromechnaical System, 19(4), 849-853 (2010)..
82Wang, G. J.* and Chou, S. W., Electrophoretic deposition of uniformly distributed TiO2 nanoparticles using an anodic aluminum oxide template for efficient photolysis, Nanotechnology, 21, 115206, (2010)
83Wang, G. J.*, Lin, Y. C., Lee, J. W,, Hsueh, C. C., Hsu, S. h, Hung, H. S., Fabrication of Orderly Nanostructured PLGA Scaffolds Using Anodic Aluminum Oxide Templates, Biomedical Microdevices, 11, 843-850. (2009)
84Wang, G. J.*, Chen, W. Z., Chang, K., A two-step etching method to fabricate nanopores in silicon, Microsystem Technologies, 14, 925-927. (2008)
85Wang, G. J.*, Chen, H. T., Yang, H., Fabrication of crystalline indium tin oxide nanobaskets electrode using AAO template, Japanese Journal of Applied Physics, 47(7), 5727-5729. (2008)
86Chien, M. C., Wang, G. J.*, Yu. M. C., Nanopore Size Estimation Using Electrochemical Impedance Spectroscopy Analysis, Japanese Journal of Applied Physics, 47(9), 7459-7463. (2008)
87Wang, G. J.*, Ho, K. H., Hsueh, C. C., Biodegradable polylactic acid (PLA) microstructures for scaffold applications, Microsystem Technologies, 14, 989-993. (2008)
88Wang, G. J.*, Lee, M. W., Chen, Y. H., A TiO2/CNT coaxial structure and standing CNT array laminated photocatalyst to enhance the photolysis efficiency of TiO2, Photochemistry and Photobiology, 84, 1493-1499. (2008)
89Wang, G. J.*, Lin, Y. C., Lin, G. S., “A Novel Contact Resistance Model of Anisotropic Conductive Film for FPD Packaging,” Microsystem Technologies, Vol. 13, No. 11-12. pp. 1477-1482. (2007)
90Fan, J. Y., Chien, M. C, Wang, G. J.*, “Experimental Investigation on the Bi-directional Growing Mechanism of the Foils Laminate Approach in AAO Fabrication,” Nanoscale Research Letters, Vol. 2, No. 1, pp. 49-53. (2007)
91Wang, G. J.*, Ho, K. H., Hsu, S. H., Wang, K. P., “Microvessel Scaffold with Circular Microchannels by Photoresist Melting,” Biomedical Microdevices, Vol. 9, pp. 657-663. (2007)
92Wang, G. J.*, Lin, B. S. and Chang, K., “In-Situ Neural Network Process Controller for Copper Chemical Mechanical Polishing,” International Journal of Advanced Manufacturing Technology, Vol. 32, pp. 42-54. (2007)
93Chien, M. C., Wang, G. J.*, Yu. W. C., “Modeling Ion Diffusion Current in a Nanochannel Using Infinitesimal Distribution RC Circuits,” Japanese Journal of Applied Physics, Vol. 46, No. 11, pp. 7436-7440. (2007)
94Wang, G. J.*, Lin, Y. C., Lin, G. S., “Ultra Fine Pitch Flat Panel Display Packaging Using 3m Conductive Particles,” Microsystem Technologies, Vol. 13, No. 11-12. pp. 1471-1476. (2007)
95Wang, G. J.*, Hsueh, C. C., Hsu, S. H., Hung, H. S., “Fabrication of PLGA Microvessel Scaffolds with Circular Microchannels Using Soft Lithography,” Journal of Micromechanics and Microengineering, Vol. 17, pp. 2000-2005. (2007)
96Wang, G. J.* and Yu, C. H., “Developing a Neural Network Based Run-To-Run Process Controller For Chemical Mechanical Planarization,” International Journal of Advanced Manufacturing Technology, Vol. 28, No. 9, pp 899-908. (2006)
97Wang, G. J.* and Hsu, Y. F., “Structure Optimization of Microvascular Scaffolds” Biomedical Microdevices, Vol. 8, No. 1, pp 51-58. (2006)
98Wang, G. J.* and Hsu, W. H., “PET Laminated Thin-Film Capillary Electrophoresis Chips by Sandwiching Method,” International Journal of Advanced Manufacturing Technology, Vol. 30, No 1-2, pp. 87-91. (2006)
99Wang, G. J.*, Yu, W. C., Lin, Y. H., Yang, H., “Modeling and Fabrication of a Piezoelectric Vibration-Induced Micro Power Generator,” Journal of Chinese Institute of Engineers, Vol. 29, No. 4. pp. 697-706. (2006)
100Yu, W. C. and Wang, G. J.*, “Discrete Sliding Mode Controller Design Based on the LQR Suboptimal Approach with Application on AC Servo Motor,” Journal of Chinese Institute of Engineers, Vol. 29, No 5, pp. 873-882. (2006)
101Wang, G. J.*, Chang, J. H., and Yang H., “Triplex-Pumping CD-Like Microfluidic Platform with Parabolic Microchannels,” Microsystem Technologies, Vol. 12, No. 10-11. pp. 899-905. (2006)
102Wang, G. J.* and Liu, H. R., “Piezoelectric Actuated Multiple Channels Optical Switch,” Analog integrated circuits and signal processing, Vol. 48, No. 1, pp15-20. (2006)
103Wang, G. J.*, Hsu, Y. F., Hsu, S. H., Horng, R. H. “JSR Photolithography Based Microvascular Fabrication and Cell Seeding” Biomedical Microdevices, Vol. 8, No. 1, pp 17-23. (2006)
104Chen, S. N., Wang, G. J.* and M. C. Chien, “Analytical modeling of piezoelectric vibration-induced micro power generator, “Mechatronics, Vol. 16, pp 379-387. (2006)
105Chang, Y. Z., Yang, M. W., Wang, G. J.*, “A New Mass Spectrometry Electro-Spray Tip Based on Precise Mechanical Micro Machining,” Analytical and Bioanalytical Chemistry, Vol. 383, No. 1, pp. 76-82. (2005)
106Wang, G. J.*, Lee, C. K., Hsu, C. C.,” Toward a Comprehensively Interdisciplinary Nanoscience and Nanotechnology Personnel Training Program In Taiwan,” INNOVATIONS 2005-World Innovations in Engineering Education and Research, Chapter IV. (2005)
107Wang, G. J.* and Chou, M. H., “A Neural-Taguchi Based Quasi Time-Optimal Control Strategy For Chemical Mechanical Polishing Processes,” International Journal of Advanced Manufacturing Technology, Vol. 26, No. 7-8, pp. 759-765. (2005)
108Wang, G. J.*, Chen, C. L., Hsu, S. H., and Chiang, Y. L., “Bio-MEMS Fabricated Artificial Vascular Network for Tissue Engineering,” Microsystem Technologies, Vol. 12, No. 1-2, pp. 120-127. (2005)
109Wang, G. J.*, Cheng, Y. D, Chang, K.,” A New Neural Fuzzy Control System with Heuristic Learning,” International Journal of Fuzzy Systems, Vol. 7, No. 4, pp. 158-168. (2005)
110Wang, G. J.*, Hsu, W. H., Chang, Y. Z., Yang, H. H. “Centrifugal and Electric Field Forces Dual-Pumping CD-Like Microfluidic Platform for Biomedical Separation,” Biomedical Microdevices, Vol. 6, No. 1, pp. 47-53. (2004)
111Yu, W. C. and Wang, G. J.*, “Discrete Sliding Mode Control with Forgetting Dynamic Sliding Surface,“ Mechatronics, Vol. 14, pp. 737-755. (2004)
112Wang, G. J.*, Yang, M. W., Chang, Y. Z. “Dead Volume Free Micro-machined Electro-spray Chip for Mass Spectrometry,” Biomedical Microdevices, Vol. 6, No. 2. pp. 159-164 (2004)
113Wang, G. J.*, and Song, S. W., Yu, W. C., “A New Discrete Dynamic Sliding Mode Controller for Singular Perturbed Servo Systems,” Journal of Chinese Society of Mechanical Engineers, Vol. 25, No. 1, pp 41-50. (2004)
114Wang, G. J.*, Wang, S. Y., and Chin, C. H., “Fabrication and Modeling of the Gray-scale Mask Based Aspheric Refraction Microlens Array,” JSME International Journal, Series C, Vol. 46, No. 4, pp. 1958-1603 (2003)
115Yu, W. C. and Wang, G. J.*, “Discrete-Type Heuristic Self-Tuning PID Controller,“ Journal of Chinese Society of Mechanical Engineers, Vol. 24, No 2, pp. 181-186. (2003)
116Wang, G. J.*, Wu, J. G., Chang K., “A New Neural Network Based Parameter Optimization Method,” Journal of Chinese Society of Mechanical Engineers, Vol. 24, No 2, pp. 99-109. (2003)
117Chen, H. T. and Wang, G. J.*, Fabrication of 3D Nano-structured ITO Films by RF Magnetron Sputtering, Current Nanoscience, 5(3), 297-301. (2009)
118Wang, G. J.* and Peng, C. S., “Control Porous Pattern of Anodic Aluminum Oxide by Foils Laminate Approach,” Journal of Nanoscience and Nanotechnology, Vol. 6, No. 4, pp 1004-1008. (2006)
119Wang, G. J.*, Lin, Y. C., and Hsu, S. h., The Fabrication of PLGA Microvessel Scaffolds with Nano-Patterned Inner Walls, Biomedical Microdevices, 12, 841-848. (2010).
120Wang, G. J.* and Chou, M. H., Chang K., “New Orthogonalization And Conjugate Descendent Based Parameter Setting-Free Methods For The Backpropagation Algorithm,” Journal of Chinese Society of Mechanical Engineers, Vol. 24, No 5, pp. 499-505. (2003)
121Wang, G. J.*, Chen, J. L., and Hwang, J. Y., “New Optimization Strategy for Chemical Mechanical Polishing Process,” JSME International Journal, Series C, Vol. 44, No. 2, pp. 534-543. (2001)
122Wang, G. J.*, Fong, T. T., and K. J. Chang, “Neural Network-Based Self-Tuning PI Controller for Precise Motion Control of PMAC Motors,” IEEE Transaction on Industrial Electronics, Vol. 48, No. 2, pp 408-416. (2001)
123Wang, G. J.*, and Chen, J. J., “Cascade Steepest Descendant Learning Algorithm for Multilayer Feedforward Neural Network,” JSME International Journal, Series C, Vol.43, No. 2, pp 350-358. (2000)
124Wang, G. J.*, and Cheng, T. C., “A Robust Self-Tuning Learning Algorithm for Multilayer Feedforward Neural Network,” Neurocomputing, Vol. 25, pp167-189. (1999)
125Wang, G. J.*, and Wang, C. C., "Reverse Engineering of Sculptured Surface by Four-Axis Non-Contacting Scanning," International Journal of Advanced Manufacturing Technology, Vol. 15, No. 5. (1999)
126Wang, G. J.*, and Yang, Y. Z., Chang, K., "A MDRS Network Based Intelligent Vision System," the International Journal of Knowledge-Based Intelligent Engineering Systems, Vol. 2, NO 1, pp. 17-31. (1998)
127Wang, G. J.*, Tsai, J. C., Tzeng, P. C., and Cheng, T. C., "Neural-Taguchi Method for Robust Design Analysis," Journal of the Chinese Society of Mechanical Engineers Vol. 19, NO 2. pp. 223-230. (1998)
128Wang, G. J.*, Luh, C. F., and Wang, C. C., "Intelligent 3D CAD Data Extracting System," JSME International Journal, Series C, Vol.41, No. 4, pp. 912-921. (1998)
129Wang, G. J.*, and Cheng, C. C., "A Fast Multilayer Neural Network Training Algorithm Based on the Layer-By-Layer Optimizing Procedures," IEEE Tran. on Neural Network, Vol. 7, No. 3, pp. 768-775 (1996)

研討會論文

#標題
1Li, C. Y., Peng, C. I., Hsu, H. J., Chang, C. C., Wang, G. J.*, Non-enzymatic and electrodeless detection of direct bilirubin using metal enhanced fluorescence effect, The ASME 14th International Conference on Micro- and Nanosystems, St. Louis, MO, USA. (2020).
2Chu, T. F. and Wang, G. J.*, A high-power non-enzymatic glucose biofuel cell based on a nano/micro hybrid-structured gold anode, 236th ECS, Atlanta, Georgia, USA. (2019)
3Lin, Y. T., Kuznetsova, I., and Wang, G. J.*, Genetically modified soybean detection using a biosensor electrode with self-assembled gold nanoparticles on a micro hemisphere array, The ASME 13th International Conference on Micro- and Nanosystems, Anaheim, California, USA. (2019).
4Wang, W. J., Lee, C. H., Li, C. W., Liao, S., Jan, F. J., and Wang, G. J.*, Direct label free detection of orchid virus using a micro/nano hybrid structured biosensor, The ASME 13th International Conference on Micro- and Nanosystems, Anaheim, California, USA. (2019).
5Chen, S. T., Chang, J. C., Liu, C. S., and Wang, G. J., A novel centrifugal device for mass-production of healthy mitochondria, IEEE NANOMED 2018, Hawaii, USA. (2018).
6Tung, Y. T., Jhang, R. N., Lin, Y. L., and Wang, G. J., Determine the binding epitope of the low affinity interaction between dengue virus and CLEC5A by a multivalent-interaction-reinforcing sensor surface, IEEE NANOMED 2018, Hawaii, USA. (2018).
7Su, C. Y. and Wang, G. J.*, Development of a three-dimensional printer for water-soluble biomaterial printing, The ASME 12th International Conference on Micro- and Nanosystems, Quebec City, Quebec, Canada. (2018).
8Lin, Y. C. and Wang, G. J.*, A novel biosensor electrode with self-assembled gold nanoparticles on a micro hemisphere array, Biosensors 2018, Miami, Florida, USA. (2018).
9Lin, Y. C., Li, C. W., and Wang, G. J.*, A novel biosensor electrode with self-assembled gold nanoparticles on a micro hemisphere array, 2017 European Advanced Materials Congress, Stockholm, Sweden. (2017).
10Li, C. W. and Wang, G. J.*, Double-layer nerve guide conduit with palisade poly(lactic-co-glycolic acid) tube wrapped by microporous chitosan–collagen composite, The ASME 11th International Conference on Micro- and Nanosystems, Cleveland, OH, USA. (2017).
11Li, C. W., Su, C. H., Chang, C. C., and Wang, G. J.*,Detection of the mitochondrial DNA 8-hydroxy-2´-deoxyguanosine mutations via a fluorescence resonance energy transfer approach, The ASME 11th International Conference on Micro- and Nanosystems, Cleveland, OH, USA. (2017).
12Tung, Y. T., Chu, J. C., and Wang, G. J.*, In vitro development of microvascular networks with a cylindrical fibrin scaffold, IEEE-NEMS 2017.
13Tseng, R. C., Li, C. W., and Wang, G. J.*, Fabrication of biocompatible ordered iron oxide nanopillars for cell behavior observation, IEEE-NEMS 2017.
14Tung, Y. T. and Wang, G. J.*, In vitro development of microvessels using a scaffold of cylindrical PLGA, The ASME 10th International Conference on Micro- and Nanosystems, Charlotte, NC, USA. (2016).
15Hsiao, Y. H., Li, C. W., Chang, J. C., Liu, C. S., and Wang, G. J.*, A microfluidic device for green extraction of healthy mitochondria, GCBME 2016, Taipei, Taiwan. (2016)
16Shen, M. C. and Wang, G. J.*, Electrochemical aptasensor for allergen Der p2 detection using a polycarbonate based double-generation gold nanoparticle chip, Biosensors 2016, Gothenburg, Sweden. (2016)
17Lee, B. Y., Li, C. W., and Wang, G. J.*, A microporous chitosan/collagen composite encapsulated small tube of nanoporous anodic aluminum oxide for long-acting drug release, 2015 ASME International Mechanical Engineering Congress and Exposition, Houston, TX, USA. (2015). The Best Paper Award-MEMS Division.
18Hsu,C. W. and Wang, G. J.*, Polymer anti-counterfeiting labels based on photonic crystal structural color, International Conference on Micro/Nano Optical Engineering, Tainan, Taiwan. (2015).
19Hsu,C. W., Su,F. C., Peng,P. Y., Young,H. T., Yang,M.,and Wang, G. J.*, A novel non-enzymatic electrochemical glucose biosensor based on a simple lithographic process, The ASME 9th International Conference on Micro- and Nanosystems, Boston, MA, USA. (2015). The Best Paper Award.
20Li, C. W., Yen, P. H., and Wang, G. J.*, A cascade microfluidic device for high quality mitochondria extraction. The ASME 9th International Conference on Micro- and Nanosystems, Boston, MA, USA. (2015).
21Tung, Y.T., Wang, G. J.*, and Ju, J. C., Developing a microvascular network using a cylinder plga scaffold, The Biomaterials International Conference 2015,June 1-5, 2015, Kenting ,Taiwan.
22Hsu, C. W., Hsieh, Y. D., and Wang, G. J.*, Quantum dots/silicon nanowire coaxial photoelectrode-based dye-sensitized solar cells, The 2015 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, April 27-30, Montpellier, France (2015).
23Hsu, C. W., Feng, W. C., Chang, K. J, and Wang, G. J.*, A novel and simple electrochemical glucose biosensor based on a silicon nanowire array electrode, The ASME 8th International Conference on Micro- and Nanosystems, Buffalo, NY, USA. (2014) The Best Paper Award.
24Chen, C. C. and Wang, G. J.*, PCR free detection of hepatitis b virus DNA using a nanostructured impedance biosensor, The ASME 8th International Conference on Micro- and Nanosystems, Buffalo, NY, USA. (2014)
25Pan, W. T., Wang, G. J.*, A novel control release platform of porous plga/gelatin composite for fast induction of mouse embryonic stem cell differentiation, Novel Biomaterials and Technology for use in Regenerative Medicine/Tissue Engineering, June 4, London, UK (2014)
26Tung, Y. T., Wu, M. F., Wang, G. J.*, and Hsieh, S. L**, A novel method for detecting glycoprotein-ligand interactions between dengue virus and its receptor CLEC5A using a nanostructured biosensor, Biosensors 2014, May 27-30, Melbourne, Australia (2014).
27Yen, P. H., Li, C. W., Wang, G. J.*, A cascade microfluidic device for high quality mitochondria extraction, Advances in Microfluidics & Nanofluidics, May 21-23, Academia Sinica, Taiwan (2014).
28Feng, W. C., Hsu, C. W., Liu, H. C., and Wang, G. J.*, A cost effective and highly sensitive glucose biosensor based on a 3d silicon nanowire array electrode, The 2014 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, April 1-4, Cannes, France (2014).
29Chung, I. C. and Wang, G. J.*, “Nanomolding of nanostructured biodegradable tissue engineering scaffolds,” Proceedings of the ASME 7th International Conference on Micro- and Nanosystems, DETC2013-12175, Portland, OR, USA. (2013)
30Hsu, C. W. and Wang, G. J.*, “High aspect ratio Au/Ni coaxial nanorod arrays for biosensing applications,” Proceedings of the ASME 7th International Conference on Micro- and Nanosystems, DETC2013-12869, Portland, OR, USA. (2013)
31Chin, Y. T. and Wang, G. J.*, “Detection of base pairs in single-nucleotide polymorphisms (SNP) using a nanostructured biosensor,” The 2013 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, April 16-18, Barcelona, Spain (2013).
32Liu, H. C., Tsai, C. C., Chang, K. J., and Wang, G. J.*, “A highly sensitive biosensor based on a 3D gold nanostructure modified screen-printed electrode for glucose detection,” The 2013 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, April 16-18, Barcelona, Spain (2013).
33Li, C. W. and Wang, G. J.*, “A material and surface morphology independent micro environment “niche” for tissue engineering,” paper # 120, IEEE-NEMS 2013, April 7-10, Suzhou, China (2013).
34Wu, J. Y., Li, C. W., Tsai, C. H., and Wang, G. J.*, “Synthesis of antibacterial TiO2/PLGA composite biofilms,” paper # 121, IEEE-NEMS 2013, April 7-10, Suzhou, China (2013).
35Wang, G. J.*, Liu, Y. F., Wu, Wu, C. C., “In-vitro allergy detection using a silver nanoparticle modified nanostructured biosensor,” Proceedings of the ASME 6th International Conference on Micro- and Nanosystems, DETC2012-70299, Chicago, IL, USA. (2012)
36Lin, Y. W. and Wang, G. J.*, “Measurement of adhesion of bovine endothelial cells on different materials using dielectrophoresis,” Proceeding of the 2012 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, (2012).
37Tsai, Y. T. and Wang, G. J.*, “Control of the ion diffusion coefficient in a nanochannel,” Proceeding of the 2012 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, (2012).
38Chen, Y. S. and Wang, G. J.*, “A high sensitivity and low-cost polycarbonate (pc)-based biosensor,” paper # 3, IEEE-NEMS 2012, March 6-8, Kyoto, Japan.
39Li, C. W., Chen, J. L., Wu, C. C., Wang, G. J.*, “The optimal vibrational shear stress for bovine endothelial cell proliferation,” paper # 183, IEEE-NEMS 2012, March 6-8, Kyoto, Japan.
40Bau, I. J. And Wang, G. J.*, “A highly sensitive electrochemical impedimetric nanobiosensor for dust mite antigen Der p2 detection”, Proceedings of the ASME 5th International Conference on Micro- and Nanosystems, DETC2011-47123, Washington DC, USA. (2011)
41Wang, H. W., Cheng, C. W., Li, C. W., Wang, G. J.*, “Fabrication of pillared PLGA microvessel scaffold using femtosecond laser ablation”, Proceedings of the ASME 5th International Conference on Micro- and Nanosystems, DETC2011-47532, Washington DC, USA. (2011)
42Chen, J. L., Wang, G. J., Guo, B. H., and Tsai, M. S., “Process Parameters analysis for CMP Pad Conditioning,” Proceeding of the Symposium on Nano Device Technology 2001, HsinChu, Taiwan, pp 134-137. (2001)
43Wang, G. J., Chen, J. L., and Hwang, J. Y., “A New Optimization Strategy For Chemical Mechanical Polishing Process,” Proceeding of the 2000 ASME International Mechanical Engineering Congress, Orlando, Florida. (2000)
44Tsai, J. C. and Wang, G. J., August, “Prototyping An Autonomous Guided Vehicle in Undergraduate Mechanical Design,” Proceeding of the 2000 International Conference on Engineering Education, paper WD1-5, Taipei, Taiwan. (2000)
45Wang, G. J. and Yeh, J. Y., “A Robust Sliding Mode Controller for Singular Perturbation System,” Proceeding of The Sixth International Conference on Automation Technology, Taipei, pp 609-616. (2000)
46Wang, G. J., Wu, J. G., Chang K., “A New Neural Network Based Parameters Optimization Method,” Proceeding of The Sixth International Conference on Automation Technology, Taipei, pp 703-710. (2000)
47Tsai, J. C. and Wang, G. J., and Chiou, S. J., "Teaching Undergraduate Mechatronics in Mechanical Design," Proceedings of the 1999 International Conference on Engineering Education, paper number 242, Ostrava, Czech Republic. (1999)
48Wang, G. J. and Huang, C. Y, “A New Optimization Approach for CMP Process, “Proceeding of the 6th Symposium on Nano Device Technology, Taiwan, pp. 119-119. (NSC-88-2212-E-005-016) (1999)
49Wang, G. J. and Chen, T. J., “ Cascade Steepest Descendant Learning Algorithm for Multilayer Feedforward Neural Network,” Proceeding of the International Joint Conference of Neural Networks’99, paper # 753, Washington, USA. (1999)
50Wang, G. J. and Lee, T. C., “Neural Network Cross-coupled Control System with Application on Circular Tracking of Linear Motor X-Y Table,” Proceeding of the International Joint Conference of Neural Networks’99, paper # 754, Washington, USA. (1999)
51Wang, G. J. and Tsai, M. S., “Heuristic Neural Network Learning Control System with Application on AC Servo Motor Precise Positioning,” Proceeding of the 1998 International Conf. On Mechatronic Technology, pp. 275-280 (NSC-86-2212-E-005-015). (1998)
52Wang, G. J. and Fong, T. T., " Neural Network-Based Self-Tuning PI Controller for Precise Motion Control of PMAC Motors," Proceeding of the 1998 International Conf. On Mechatronic Technology, pp. 349-354. (NSC-86-2212-E-005-024). (1998)
53Wang, G. J. and Fong, T. T., " Neural Network-Based Self-Tuning PI Controller for Precise Motion Control of PMAC Motors," Proceeding of the 1998 International Conf. On Mechatronic Technology, pp. 349-354. (NSC-86-2212-E-005-024). (1998)
54Wang, G. J., and Wang, C. C., "Reconstruction of Sculptured Surface on Reverse Engineering," Proceeding of the 1997 ASME Computers in Engineering Conference, Sacramento, California, USA. DETC97/CIE-4288 (NSC-86-2212-E-005-015). (1997)
55Wang, G. J., Tsai, J. C., Tzeng, P. C., and Cheng, T. C., "Neural-Taguchi Method for Robust Design," Proceedings of the 1996 ASME Computers in Engineering Conference, 96-DETC/CIE-1327, Irvine, California, USA (NSC 86-2212-E005-015). (1996)
56Tseng, P. C. and Wang, G. J., "Tool Failure Recognition in End Mill," Proceedings of the Fourth International Conference on Automation Technology, AUTOMATION´96, VOL. I, pp 743-750, Hsinchu, Taiwan. (1996)
57Wang, G. J., and Luh, C. F., "Neural Network Approach for Repetitive Control System Design," the 1995 ASME International Mechanical Engineering Congress and Expositon, November, San Francisco, DSC-Vol. I, pp. 573-560 (NSC 83-0401-E005-038). (1995)
58Wang, G. J. and Liu, S. H., "A New Fuzzy-Neural Learning Control Algorithm", The Third International Conference on Automation Technology, AUTOMATION´94, Taipei, Taiwan, Vol. III, pp115-120. (1994)
59Wang, G. J., and Cheng, C. C., "Optimal Learning Algorithm for Multilayer Feedforward Neural Networks," IEEE World Congress on Computational Intelligence, Orlando, Flordia, Vol. II, pp 850-855. (1994)
60Li, C. W. Chen, J. L., Wang, G. J.*, “A simple method for investigating the optimal shear stress for cell growth“, Proceedings of the 5th World Congress on Bioengineering, August 18-21, 2011, Tainan, Taiwan, (2011)
61Tsai, Y. T and Wang, G. J.*, “Measurement of Diffusivity in Nanochannels,” Proceeding of the 2011 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, (2011)
62Ho, J. Y. and Wang, G. J.*, “Fabrication of High Aspect Ratio Nanoporous Array on Silicon,” Proceeding of the 2011 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, (2011)
63Wang, G. J.*, “Applications of Nanotechnology in Biomedical Micro/Nano Devices,” 2010 International Conference on Solid State Devices and Materials, SSDM-8049, Sep., 2010, Tokyo, Japan (Invited).
64Li, C. W. and Wang, G. J.*, “investigation of the influences of micro vibrational stimuli and hydrophilicity of a scaffold on a bovine endothelial cell culture,” Proceedings of the ASME 4th International Conference on Micro- and Nanosystems, 10-DETC-28115, Montreal, Quebec, Canada. (2010)
65Wang, G. J.*, Lin, Y. H., and Chang, K., “A Novel Chip-on-Glass method for Slim LCD Packaging,” Proceeding of the 2010 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, (2010)
66Wang, G. J., Chen, G. Y., Lin, Y. C., " A Lab-on-a-Chip Capillary Network for Red Blood Cell Diagnosis," Proceedings of the ASME 3rd International Conference on Micro- and Nanosystems, 09-DETC-87299, San Diego, California, USA. (2009)
67Wang, G. J. and Lin, Y. D., “A 3-Dimensional Nanobiosensor Based on an Anodic Aluminum Oxide Template,” Proceeding of the Nanotech 2009, #284, May 3-7, Houston, Texas, USA. (2009)
68Hsu, C. W. and Wang, G. J., “Fabrication of Patterned Array of Alumina-Metal Coaxial Nanorods,” Proceeding of the 2009 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, #1001. (2009)
69Wang, G. J., Chien, M. C., "Nanopore size estimation using electrochemical impedance spectroscopy analysis," Proceedings of the ASME 2nd International Conference on Micro- and Nanosystems, 08-DETC-49699, New York City, USA. (2008)
70Wang, G. J., "A Novel Chloroplastmimic Photovoltaics Powered by Proton Motive Force," Proceedings of the 8th Emerging Information and Technology Conference, Tainan, Taiwan. (2008)
71Hsueh, C. C., Wang, G. J., Hsu, S. h, Hung, H. S., “Fabrication of nanostructured PLGA scaffolds using anodic aluminum oxide templates,” Proceeding of the 2008 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, #1091. (2008)
72Wang, G. J., Shueh, C. C., "Fabrication of PLGA Microstructures Made Up of Circular Microchannels Using Soft Lithography," Proceedings of the ASME 1st International Conference on Micro- and Nanosystems, 07-DETC-34321, Las Vegas, USA. (2007)
73Wang, G. J., Shueh, C. C., "A Novel Chloroplastmimic Photovoltaics with Full Visible Spectrum Operation," Proceedings of the ASME 1st International Conference on Micro- and Nanosystems, 07-DETC-34322, Las Vegas, USA. (2007)
74Wang, G. J., Ho, K. H., Hsueh, C. C., “Biodegradable polylactic acid (PLA) microstructures for scaffold applications,” Proceeding of the 2007 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, pp 260-263. (2007)
75Wang, G. J., Chen, W. Z., Chang, K., “A two-step etching method to fabricate nanopores in silicon,” Proceeding of the 2007 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, pp 169-172. (2007)
76Wang, G. J., Chen, W. Z., Lee, M. W., “A Novel Chloroplastmimic Photovoltaics with Full Visible Spectrum Operation,” Taiwan-Japan Bilateral Symposium on Research and Education of Nanotechnology, Tokyo, Japan. (2006)
77Chien, M. C., Yang, F. C., and Wang, G. J.*, “Modeling of ion diffusion induced current through a nanochannel”, European Nano Systems 2006. Dec. 14-15, Paris, France.
78Fan, J. Y., Yang, F. C., Chien, M. C., and Wang, G. J.*, “Experimental investigation on the bi-directional growing mechanism of the foils laminate approach in aao fabrication,” European Nano Systems 2006. Dec. 14-15, Paris, France.
79Wang, G. J., Lin, Y. C., Lin, G. S., “Ultra Fine Pitch Flat Panel Display Packaging Using 3M Conductive Particles,” Proceeding of the 2006 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, pp 20-24. (2006)
80Wang, G. J., Lin, Y. C., Lin, G. S., “ A Novel Contact Resistance Model of Anisotropic Conductive Film For FPD Packaging,” Proceeding of the 2006 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, pp 105-109. (2006)
81Wang, G. J. and Chang, W. C., “Imitation of the ion diffusion and ion pumping mechanisms of a living cell by nanoporous alumina membrane,” European Nano Systems 2005, Dec. 14-16, Paris, France.
82Wang, G. J. and Peng, C. S., “Control Porous Pattern of Anodic Aluminum Oxide by Foils Laminate Approach,” European Nano Systems 2005, Dec. 14-16, Paris, France.
83Wang, G. J., “Structure Optimization, Fabrication, and Cell Seeding of Microvessel Scaffold for Tissue Engineering,” 1st International Forum of Tissue Engineering and Clinical Adult Stem Cell Therapy, Taichung, Taiwan. (2005)
84Wang, G. J. and Liu H. R.,“Piezoelectric Actuated Multiple Channels Optical Switch, ” Proceeding of the 2005 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, pp 268-272. (2005)
85Wang, G. J., Chang, J. H., and Yang H., “Triplex-Pumping CD-Like Microfludic Platform with Parabolic Microchannels,” Proceeding of the 2005 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, pp 49-55. (2005)
86Chen, S. N., Wang, G. J., Yu, W. C., “Analytic Modeling and Experimental Verification of Thin-film Piezoelectric Vibration-Induced Micro Power Generator,” The 2004 ASME International Mechanical Engineering Congress, Paper # 59543. (2004)
87Wang, G. J., Lin, B. S., Chang, K., “Neural Network Based Run-To-Run Process Controller For Copper Chemical Mechanical Polishing”, The 2004 ASME International Mechanical Engineering Congress, Paper # 59546. (2004)
88Wang, G. J., and Hsu, C. C., “Toward A Comprehensively Interdisciplinary Nanoscience and Nanotechnology Personnel Training Program,” Proceeding of the 2004 International Conference on Engineering Education and Research, pp. 773-778. (Plenary Session) (2004)
89Wang, G. J., Chen, C. L., Hsu, S. H., and Chiang, Y. L., “Bio-MEMS Fabricated Artificial Vascular Network for Tissue Engineering,” Proceeding of the 2004 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, Montreux, Switzerland, pp. 355-360. (2004)
90Yu, W. C., Wang, G. J., and Chang, C. C., “Discrete Sliding Model Control with Forgetting Dynamic Sliding Surface,” ICICS 2003. (2003)
91Wang, G. J. , Yu, W. C., and Chang, C. C., “Model Reference Based Sliding Mode Controller with Application to AC Servomotors Precise Positioning,” ICICS 2003. (2003)
92Yu, W. C. and Wang, G. J., “Discrete Suboptimal Frequency-Shaped Sliding Mode Control, “ ICMT 2003. (2003)
93Wang, G. J., Lin, Y. H., Yang, H. H., Pan, C. T., “Design And Fabrication Of A High Efficiency Piezoelectric Vibration-Induced Micro Power Generator,” The 2003 ASME International Mechanical Engineering Congress, Paper # 42682. (2003)
94Yu, W. C. and Wang, G. J., “Discrete Sliding Mode Controller Design Based on the Suboptimal LQR Approach,“The 2003 ASME International Mechanical Engineering Congress, Paper # 42589. (2003)
95Wang, G. J., Cheng, W., Yang, J, and Pan, C., “Aspheric Micro-Lens-Array fabricated by excimer laser dragging,” The 2002 ASME International Mechanical Engineering Congress, Paper # 34306. (2002)
96Tsai, J. C. and Wang, G. J., “Design and Prototyping A Wireless Autonomous Guided Vehicle in Undergraduate Mechanical Design Practice," Proceedings of the 2002 International Conference on Engineering Education, paper No. 0309, Manchester, United Kingdom. (2002)
97Tsai, J. C. and Wang, G. J., Chiou, S. J., Chen, J. L., Fann, K. J., and Chen, T. Y., “A Curriculum in Machine Tools Technologies for Mechanical Engineering Graduates,” Proceedings of the 2002 International Conference on Engineering Education, paper No. 0219, Manchester, United Kingdom. (2002)
98Wang, G. J., S. Y. Wang, and Chin, C. H., “Fabrication and Modeling of the Gray-scale Mask Based Aspheric Refraction Microlens Array,” Proceeding of the 2002 Design, Test, Integration and Packaging of MEMS/MOEMS Conference, France, pp. 765-775. (2002)
99Wang, G. J. and Chou, M. H., “A Neural-Taguchi Based Quasi Time-Optimal Control Strategy For Chemical Mechanical Polishing Processes,” 2001 ASME International Mechanical Engineering Congress, Paper # EEP-15-1. (2001)
計畫名稱擔任工作起訖年月補助機構
以Au/N同軸奈米柱陣列束為陽極之無酵素葡萄糖燃料電池開發主持人112-08-01 ~ 114-07-31國 科 會
機器駕駛關鍵技術及模組開發研究中心(3/4)主持人112-05-01 ~ 113-04-30國 科 會
3D列印有機薄膜電晶體於生醫檢測應用(龍門計畫)主持人111-09-01 ~ 112-08-31科 技 部
機器駕駛關鍵技術及模組開發研究中心(2/4)主持人111-05-01 ~ 112-04-30科 技 部
粒線體萃取、分離、與微脂體包覆之三合一實驗室碟片平台開發主持人110-08-01 ~ 112-07-31科 技 部
機器駕駛關鍵技術及模組開發研究中心(1/4)主持人110-05-01 ~ 111-04-30科 技 部
粒線體萃取、分離、與微脂體包覆之三合一實驗室碟片平台開發主持人110-08-01 ~ 59-01-01科 技 部
無酵素血糖、血球容積比、糖化血色素整合檢測平台開發主持人109-08-01 ~ 111-07-31科 技 部
粒線體轉植於細胞增生與分化之影響及其於傷口癒合之應用主持人108-08-01 ~ 110-02-01科 技 部
教育部智慧製造跨校跨域教學策略聯盟計畫聯盟中心主持人108-02-01 ~ 109-12-31教育部
奈微米複合結構金電極生醫感測晶片應用於鈉、鉀、氯離子與分析儀設計開發主持人108-01-01 ~ 109-07-01保生國際生醫股份有限公司
教育部智慧創新高值醫材學產研鏈結人才培育計畫主持人108-01-01 ~ 109-12-31教育部
產學合作計畫-表面增強之手提式拉曼光譜儀開發及檢測應用(佐信科技)主持人107-11-01 ~ 109-10-01科技部 & 佐信科技
無酵素葡萄糖檢測晶片鏈結計畫共同主持人107-04-01 ~ 107-12-31塑膠中心
臺俄(RU)國合計畫-整合奈米電子、聲波電子、電化學技術之複合感測器研發及其在生物檢測之應用主持人107-01-01 ~ 109-12-31科 技 部
健康粒腺體之綠色萃取與長時效保存效能研究主持人105-08-01 ~ 108-07-31科 技 部
台以國合計畫-奈/微米複合結構對腫瘤細胞生長之影響主持人104-09-01 ~ 106-08-31科 技 部
光子晶體結構顯色之防偽標籤製作技術開發主持人104-08-01 ~ 107-07-31科 技 部
發展高度靈敏的奈米生物偵測儀來研究醣基與凝集素之間的交互作用共同主持人103-10-01 ~ 106-09-30科 技 部
微血管網絡器官晶片技術開發主持人103-08-01 ~ 105-07-31科 技 部
健康粒線體純化與疾病治療應用研究主持人103-06-01 ~ 104-05-31彰化基督教醫院
產學合作計畫-塵螨過敏原檢測晶片量產技術開發(昇陽半導體)主持人103-06-01 ~ 105-05-31科 技 部
奈米國家型人才培育計畫--中台灣前瞻奈米科技人才培育計畫(3/3)主持人103-06-01 ~ 104-05-31科 技 部
奈米國家型人才培育計畫--中台灣前瞻奈米科技人才培育計畫(2/3)主持人102-06-01 ~ 103-05-31國 科 會
尖端生物技術科技人才培育計畫—檢驗與醫材產業伙伴學校主持人102-01-01 ~ 102-12-31教育部
金鎳同軸奈米桿製作與生醫檢測應用主持人101-08-01 ~ 104-07-31國 科 會
奈米國家型人才培育計畫--中台灣前瞻奈米科技人才培育計畫(1/3)主持人101-06-01 ~ 102-05-31國 科 會
個人化過敏疾病基因檢測技術開發主 持 人101-01-01 ~ 103-12-31衛生署
尖端生物技術科技人才培育計畫—檢驗與醫材產業伙伴學校主持人101-01-01 ~ 101-12-31教育部
以水平微振動平台控制細胞增生與幹細胞分化主持人100-08-01 ~ 103-07-31國 科 會
矽晶材料表面奈米化技術研究主持人100-08-01 ~ 101-07-31合晶科技
奈米國家型人才培育計畫--中台灣前瞻奈米科技人才培育計畫(3/3)主持人100-06-01 ~ 101-05-31國 科 會
3D立體結構之人工微血管製作技術開發主持人100-03-01 ~ 100-12-31工研院
尖端生物技術科技人才培育計畫—檢驗與醫材產業伙伴學校主持人100-01-01 ~ 100-12-31教育部
微奈米生醫晶片前端製程量產技術研發主持人99-06-01 ~ 100-05-31國 科 會
奈米國家型人才培育計畫--中台灣前瞻奈米科技人才培育計畫(2/3)主持人99-06-01 ~ 100-05-31國 科 會
前瞻人工微血管製作技術開發主持人99-03-01 ~ 99-12-31工研院
尖端生物技術科技人才培育計畫—檢驗與醫材產業伙伴學校主持人99-01-01 ~ 99-12-31教育部
以奈米探針即時偵測活細胞對環境微處理的生理與生化反應-台美國際合作計畫主持人98-11-01 ~ 100-10-31國 科 會
奈米粒子於奈米孔洞之擴散係數量測與控制技術研究主持人98-08-01 ~ 101-07-31國 科 會
奈米國家型人才培育計畫--中台灣前瞻奈米科技人才培育計畫(1/3)主持人98-06-01 ~ 99-05-31國 科 會
以高靈敏之奈米生醫晶片建立本土型過敏原基因資料庫及其臨床應用主 持 人98-03-01 ~ 101-02-29衛生署
尖端生物技術科技人才培育計畫--生醫奈米科技伙伴學校主持人98-01-01 ~ 98-12-31教育部
高密度矽基奈米孔洞陣列製備技術研究主 持 人97-08-01 ~ 99-07-31國 科 會
高效能奈米結構染料敏化太陽能電池技術開發(II)主 持 人98-01-01 ~ 98-12-31國 科 會 經濟部
高效能奈米結構染料敏化太陽能電池技術開發(I)主 持 人97-01-01 ~ 97-12-31國 科 會 經濟部
以PLGA奈米結構支架探討不同物理作用對細胞生長與結構之影響主 持 人97-01-01 ~ 97-12-31中興大學 台中榮總
中藥微(奈)米化技術開發及安全性研究--中藥微(奈)米製程與粒徑分析共同主持人96-09-01 ~ 97-12-31衛生署
仿葉綠體機制之光電池模式建立與技術研究(二年期)主 持 人95-08-01 ~ 97-07-31國 科 會
圖案化之陽極氧化鋁膜板技術開發及其在直立式奈米碳管陣列之製備應用(三年期)主 持 人94-08-01 ~ 97-07-31國 科 會
教育部前瞻奈米科技人才培育計畫(中南區)主 持 人95-01-01 ~ 97-12-31教育部
震動式微小型發電機可行性分析主 持 人95-08-01 ~ 96-03-31良峰機械
尖端生物技術科技人才培育計畫--生醫奈米科技伙伴學校主持人95-01-01 ~ 95-12-31教育部
保肝中藥微(奈)米化技術開發及安全性研究--保肝中藥微(奈)米製程與粒徑分析主 持 人95-04-01 ~ 95-12-31衛生署
奈米碳管應用產品技術調查分析主 持 人95-02-01 ~ 95-07-31久正光電
中草藥奈米化安全性評估主 持 人94-07-01 ~ 94-12-31衛生署
壓電式微電源供應單晶片系統開發研究主 持 人93-08-01 ~ 94-07-31國 科 會
組織工程與幹細胞研究中心協同主持人93-01-01 ~ 94-12-31國家衛生研究院
晶圓銅薄膜平坦化製程技術研究(總計畫)主 持 人92-08-01 ~ 93-07-31國 科 會
晶圓銅薄膜拋光製程參數最佳化與製程監控技術研究(子計畫一)主 持 人92-08-01 ~ 93-07-31國 科 會
教育部區域性奈米科技人才培育計畫(中南區)主 持 人92-01-01 ~ 94-12-31教育部
軟性印刷電路板(FPC)精密加工設備定位靶型辨識技術之研發主 持 人91-06-01 ~ 92-05-31國 科 會
CM1衝壓伺服電控設計主 持 人91-08-01 ~ 92-07-31金豐精密機械
高頻震動薄膜設計製程開發計畫主 持 人91-04-01 ~ 91-10-31工研院機械所
以類神經網路為基礎之Run-To-Run製程控制器設計及其在化學機械研磨製程即時控制之應用主 持 人90-08-01 ~ 92-07-31國 科 會
奇異擾動系統離散最佳滑動模式控制器設計及其在Linux-Based單板控制器之實現研究主 持 人90-08-01 ~ 91-07-31國 科 會
教育部「機電設計與整合」科技教育改進計畫「3C產業應用」伙伴學校主 持 人90-01-01 ~ 90-12-31教育部
教育部「精密機械」科技教育改進計畫「精密工具機」伙伴學校主 持 人 共同主持人90-01-01 ~ 91-12-31教育部
嵌入式系統Real-Time設計技術研究主 持 人90-03-01 ~ 90-12-31精密機械 研發中心
Run-to-run控制器於銅製程CMP之應用研究主 持 人90-07-01 ~ 91-06-30毫微米元件 實驗室
CMP線上終點偵測技術研究主 持 人89-08-01 ~ 90-07-31國 科 會
化學機械拋光技術於微機電製程之應用研究主 持 人89-07-01 ~ 90-06-30毫微米元件 實驗室
四行程引擎最佳點火角度控制研究主 持 人88-09-01 ~ 89-08-31光陽機車 漢翔航空
化學機械拋光製程中監控技術之研究-II主 持 人88-09-01 ~ 89-12-31毫微米元件 實驗室
CMP拋光製程監控整合技術發展-II主 持 人88-08-01 ~ 89-07-31國 科 會
Inspection of Microparts using Machine Vision指 導 教 授88-07-01 ~ 89-02-29國 科 會
田口實驗法在光學微影製程參數設定之應用指 導 教 授87-11-01 ~ 88-06-30國 科 會
衝壓製程參數最佳化設定主 持 人88-01-01 ~ 88-12-31台勵福精機
CMP拋光製程監控整合技術發展主 持 人87-08-01 ~ 88-07-31國 科 會
化學機械拋光製程中監控技術之研究主 持 人87-07-01 ~ 88-06-30毫微米元件 實驗室
高速切削最佳控制器參數之設定主 持 人87-05-01 ~ 88-06-30友嘉實業
MDRS網路在智慧型影像辨識系統之應用主 持 人86-08-01 ~ 87-07-31國 科 會
CNC車削中心C軸研製-C軸精密定位系統主 持 人86-08-01 ~ 87-07-31國 科 會
CNC主軸馬達驅動扭矩測試技術主 持 人86-10-01 ~ 87-03-31精密機械 研發中心
雙軸伺服線性平台精密循圓控制研究指 導 教 授86-07-01 ~ 87-02-28國 科 會
多層前饋式類神經網路參數自調學習法則主 持 人85-08-01 ~ 86-07-31國 科 會
CNC車削中心C軸研製-C軸精密定位系統主 持 人85-08-01 ~ 86-07-31國 科 會
IC版自動定位鑽孔機精密定位控制研究指 導 教 授85-07-01 ~ 86-02-28國 科 會
啟發式類神經網路型學習控制系統主 持 人84-08-01 ~ 85-07-31國 科 會
CNC車削中心C軸研製-C軸精密定位系統主 持 人84-08-01 ~ 85-07-31國 科 會
IC版自動定位鑽孔機械製作研究指 導 教 授84-07-01 ~ 85-02-29國 科 會
類神經網路在縱向飛行控制系統主 持 人82-08-01 ~ 83-07-31國 科 會
類神經網路在高性能磁碟機控制主 持 人82-08-01 ~ 83-07-31國 科 會
三度空間曲面資料擷取系統主 持 人82-06-01 ~ 84-05-31金屬中心
渦輪噴射引擎模擬與控制協同主持人81-08-01 ~ 84-07-31國 科 會
#標題
1食品腐壞檢測膜,台灣,發明專利I819678,王國禎、張健忠、杜園草,112/10/21-131/06/23
2修飾非平面電極之方法及含有該電極之晶片,ROC,發明專利I 686605號,王國禎、林袁志、李靜雯、楊敏聰、吳伯志、廖學專、曾茂益,109/03/01-126/08/21
3粒線體萃取裝置,ROC,發明專利I 671397號,王國禎、李靜雯、陳頌慈、劉青山、張瑞芝,108/09/11-126/07/31
4微流道晶片,ROC,設計第D 202788號,王國禎、蕭語涵、李靜雯、劉青山、張瑞芝,109/02/21-120/11/09
5可撓防偽標籤之製作方法,ROC,發明專利I 664063號,王國禎、彭長毅、許哲瑋、李靜雯、張健忠,108/07/01-126/12/27
6無酵素葡萄糖檢測晶片,ROC,發明專利第I 585403號 ,王國禎、許哲瑋、楊敏聰、廖學專、彭柏祐,106/06/01-125/01/28
7生醫檢測晶片及以之進行檢測之方法,ROC,發明專利第I 560447號,王國禎、謝世良、董彥廷,105/12/1-123/08/11
8細胞胞器篩選裝置及以其採集細胞胞器之方法,ROC,發明專利第I 560269號,王國禎、蘇鴻麟、劉青山、李靜雯、顏寶欣,105/12/01-124/02/12
9脆性材料切割刀頭,ROC,發明專利第I 541116號 蔡志成、劉家安、簡孟瑜、王國禎,105/07-123/03
10用於檢測或/及定量B型肝炎病毒之平台及其方法,ROC,發明專利第I 530685號 王國禎、吳俊穎、林肇堂、賴紫綸、陳俊丞,105/04-123/11
11太陽能矽基版及其製造方法,ROC,發明專利第I 511318號 王國禎、劉錫謙,104/12-122/12
12檢測MD2基因啟動子突變之探針、晶片與方法,ROC,發明專利第I 493041號 王國禎、蔡肇基、廖恩慈、秦于婷,104/07-122/12
13往復式腳踏發電裝置,ROC,發明專利第I 467090號,蔡志成、王國禎、蘇煒淩、莊易勳、劉浩東,104/01-119/12
14具凹型透鏡導光器之太陽能板 ,ROC,發明專利第I 411822號,蔡志成、王國禎、范志威,102/10-118/11
15低照度發電太陽能裝置,ROC,發明專利 096120528,蔡志成、王國禎、謝貴璽、陳明風、廖國忠,101/12-120/11
16精密拋光研磨機撓性承載器裝置,ROC,P78030,蔡志成、王國禎、侯思吉、蔡沛原、林耕舜、王星翔
17精密線性拋光研磨機裝置,ROC,新型第95204985,蔡志成、王國禎、侯思吉、蔡沛原、林耕舜、王星翔,95/08-105/03
18晶圓化學機械研磨時控製程,ROC,221435,王國禎、蔡志成、陳昭亮,93/10-110/01
19單馬達多軸向之傳動離合裝置,ROC,194123,蔡志成、王國禎、戴志光,91/09-102/01
20晶圓化學研磨拋光製程,ROC,164935,王國禎、蔡志成、陳昭亮,91/10-108/08
21Time Optimal Control Strategy for CMP Processes,USA,6564116 B2,王國禎、蔡志成、陳昭亮,90/04-110/04
22王國禎、楊烽正、余文俊,”視窗介面微電腦感測與控制應用實務”,2003,全華圖書公司。
23王國禎,”生泰合成工業股份有限公司”,經濟部技術處申請執行科技專案管理制度評鑑-研發管理個案實例報告,1-12頁,2003年12月。
24簡瑞與、林麗章、王國禎、蔡志成、邱顯俊、陳昭亮與蔡明蒔,2000年二月,“化學機械研磨製程與實驗機台之研究”,機構與機器設計,第十一卷第一期,13-20頁。
25陳定宇、林麗章、王國禎、曾柏昌、蔡志成與邱顯俊,1998年二月,“CNC車削中心C軸研發現況”,機構與機器設計,第九卷第一期,8-14頁。
26王國禎,1996 “自動化次系統-實習教材,” 教育部製造業自動化科技教育改進計畫。
27王國禎,1994 ,“工業電子感測器-實習教材,” 教育部製造業自動化科技教育改進計畫。