Vice President for Administration

Ko-Wei Weng
Llifetime Distinguished Professor & Vice President for Administration
National Quemoy University
Email: kowei@nqu.edu.tw
Tel: (082) 313901
Education
Ph.D., Department of Materials Engineering, National Chung Hsing University, Taiwan
Research Interests
Thin Film Technology · Surface Engineering · Surface Analysis
Professional Experience
Current Positions
|
Institution |
Department / Office |
Title |
Period |
|
National Quemoy University |
Office of the Vice President for Administrative Affairs |
Vice President for Administrative Affairs |
2026/08 – Present |
|
National Quemoy University |
Department of Electrical Engineering |
Tenured Distinguished Professor |
2022/08 – Present |
Previous Positions
|
Institution |
Department / Office |
Title |
Period |
|
National Quemoy University |
College of Science and Engineering |
Tenured Distinguished Professor & Dean |
2022/08 – 2026/07 |
|
National Quemoy University |
Office of Research and Development |
Tenured Distinguished Professor & Dean of Research and Development |
2022/08 – 2023/07 |
|
National Quemoy University |
Secretariat Office |
Professor & Secretary-General |
2012/08 – 2014/07 |
|
National Quemoy University |
Department of Electrical Engineering |
Distinguished Professor |
2018/08 – 2022/07 |
|
National Quemoy University |
Department of Electrical Engineering |
Professor |
2012/08 – 2018/07 |
|
National Quemoy University |
Department of Electrical Engineering |
Associate Professor |
2011/02 – 2012/07 |
|
National Quemoy University |
Teaching Resource Center, Office of Academic Affairs |
Director |
2011/08 – 2012/07 |
|
MingDao University |
Academic Development Center, Office of Research and Development |
Director |
2010/06 – 2011/01 |
|
MingDao University |
Department of Materials Science and Engineering |
Associate Professor |
2008/02 – 2011/01 |
|
MingDao University |
Department of Materials Science and Engineering |
Assistant Professor |
2005/08 – 2008/01 |
|
Mingdao Management College |
Institute of Materials and System Engineering |
Assistant Professor |
2003/08 – 2005/07 |
|
Mingdao Management College |
Curriculum Section, Office of Academic Affairs |
Assistant Professor & Section Chief |
2004/08 – 2005/07 |
|
Mingdao Management College |
Teaching Section, Office of Academic Affairs |
Assistant Professor & Section Chief |
2004/08 – 2005/07 |
|
Mingdao Management College |
Administrative Section, General Education Center |
Assistant Professor & Section Chief |
2003/08 – 2004/07 |
|
Mingdao Management College |
Applied Technology Research Center |
Assistant Research Fellow |
2002/08 – 2003/07 |
Journal Article
[1] Ko-Wei Weng and Sheng Han, "Photocatalytic performance of TiVOx/TiO2 thin films prepared by bipolar pulsed magnetron sputter deposition," Journal of Vacuum Science & Technology B, Vol. 35(4), 16 June 2017 (SCI).
[2] Yu-Xiang Zhao, Sheng Han, Han-Lin Yi, Chung-Hsuan Hu, Li-Yu Hua, Tan-Lee Chin, Ying-Chun Hung, Ko-Wei Weng*, "Photocatalytic properties of TiO2 films prepared by bipolar pulsed magnetron sputtering," Surface and Coatings Technology, Vol. 320, 25 June 2017, pp. 630–634 (SCI, IF = 2.141).
[3] Ko-Wei Weng, Chung-Hsuan Hu, Li-Yu Hua, Chin-Tan Lee, Yu-Xiang Zhao, Julian Chang, Shu-Yi Yang, Sheng Han, "Photocatalytic activity of bipolar pulsed magnetron sputter deposited TiO2/TiWOx thin films," Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, Vol. 381, 15 August 2016, pp. 6–10 (SCI).
[4] Tai-Nan Lin, Yi-Han Lin, Chin-Tan Lee, Sheng Han, Ko-Wei Weng*, "Electrochromic properties of bipolar pulsed magnetron sputter deposited tungsten–molybdenum oxide films," Thin Solid Films, Vol. 584, 1 June 2015, pp. 341–347 (SCI, IF = 1.935).
[5] Tai-Nan Lin, Sheng Han, Ko-Wei Weng*, Chin-Tan Lee, "Investigation on structural and mechanical properties of anti-sticking sputtered tungsten chromium nitride films," Thin Solid Films, Vol. 529, 1 February 2013, pp. 333–337 (SCI, IF = 1.935).
[6] Ko-Wei Weng*, Tai-Nan Lin, Jung-Jie Huang, Yu-Pei Huang, "Deposition of NiVOx thin films by pulse magnetron sputtering with various Ar/O2 ratios," Thin Solid Films, Vol. 529, 1 February 2013, pp. 62–65 (SCI, IF = 1.935).
[7] Ko-Wei Weng, Yu-Pei Huang, "Preparation of TiO2 thin films on glass surfaces with self-cleaning characteristics for solar concentrators," Surface and Coatings Technology, Vol. 231, 25 September 2013, pp. 201–204 (IF = 2.141).
[8] Ko-Wei Weng*, Ya-Chi Chen, Tai-Nan Lin, Yun-Da Li, Tien-Lai Chen, "Characterization of Ni0.92V0.08Ox thin film deposited by pulse sputter method," Vacuum, Vol. 87, January 2013, pp. 169–173 (IF = 1.04).
[9] Ya-Chi Chen, Tai-Nan Lin, Tien-Lai Chen, Yun-Da Li, Ko-Wei Weng*, "Electrochromic properties of tungsten–titanium oxide films," Journal of Nanoscience and Nanotechnology, Vol. 12, No. 2, February 2012, pp. 1296–1300 (SCI, IF = 1.352).
[10] Kuo-Shan Yao, Ya-Chi Chen, Ching-Hsun Chao, Wei-Fan Wang, Shui-Yang Lien, Han-Chang Shih, Tien-Lai Chen, Ko-Wei Weng*, "Electrical enhancement of DMFC by Pt–M/C catalyst-assisted PVD," Thin Solid Films, Vol. 518, Issue 24, October 2010, pp. 7225–7228 (SCI, IF = 1.935).
[11] Ya-Chi Chen, Ko-Wei Weng*, Ching-Hsun Chao, Shui-Yang Lien, Sheng Han, Tien-Lai Chen, Ying-Chieh Lee, Han-Chang Shih, Da-Yung Wang, "Effects of CPII implantation on the characteristics of diamond-like carbon films," Applied Surface Science, Vol. 255, May 2009, pp. 7216–7220 (SCI, IF = 1.795).
[12] Ko-Wei Weng, Sheng Han, Ya-Chi Chen, Da-Yung Wang, "Characterization of tungsten–titanium oxide electrode for electrochromic applications," Applied Surface Science, Vol. 255, Issue 6, 2009, pp. 3848–3853 (SCI, IF = 1.795).
[13] Ko-Wei Weng, Ya-Chi Chen, Sheng Han, Chih-Sheng Hsu, Yung-Lin Chen, Da-Yung Wang, "Effects of ion implantation on the microstructure and residual stress of filter arc CrN films," Thin Solid Films, Vol. 516, Issue 16, 30 June 2008, pp. 5330–5333 (SCI/EI, IF = 1.935).
[14] Ko-Wei Weng, Tai-Nan Lin, Da-Yung Wang, "Tribological property enhancement of CrN films by metal vapor vacuum arc implantation of vanadium and carbon ions," Thin Solid Films, Vol. 516, 2008, pp. 1012–1019 (SCI/EI, IF = 1.935).
[15] Ko-Wei Weng, Sheng Han, Ya-Chi Chen, Ta-Nien Yuan, Da-Yung Wang, "Characteristics of diamond-like carbon film deposited by filter arc deposition," Journal of Materials Processing Technology, Vol. 203, Issues 1–3, 18 July 2008, pp. 117–120 (SCI, IF = 1.57).
[16] Ko-Wei Weng, Sheng Han, Ya-Chi Chen, Han-Chun Chuang, "Effects of MPII-implanted titanium on the electrochromic properties of tungsten trioxide," Nuclear Instruments and Methods in Physics Research B, Vol. 266, Issue 7, April 2008, pp. 1069–1073 (SCI, IF = 1.042).
[17] Ko-Wei Weng, Yung-Lin Chen, Ya-Chi Chen, Tai-Nan Lin, "Electrical enhancement of DMFC by MPII Pt–Ru/C multilayer catalysts," Journal of Nanoscience and Nanotechnology, Vol. 9, Issue 2, February 2009, pp. 821–826 (SCI, IF = 1.352).
[18] Ko-Wei Weng, Ya-Chi Chen, Tai-Nan Lin, Da-Yung Wang, "Characterization of titanium nitride coatings deposited by metal plasma ion pre-implantation and cathodic arc evaporation," Journal of Nanoscience and Nanotechnology, Vol. 9, Issue 2, February 2009, pp. 1127–1132 (SCI, IF = 1.352).
[19] Ko-Wei Weng, Sheng Han, Yung-Lin Chen, Ya-Chi Chen, Da-Yung Wang, "Characteristics of DMFC electrodes improved by MPII Pt–Ru catalysts," Surface and Coatings Technology, Vol. 201, Issue 15, 2007, pp. 6557–6560 (SCI, IF = 2.141).
[20] Ko-Wei Weng, Ya-Chi Chen, Tai-Nan Lin, Da-Yung Wang, "Metal-doped diamond-like carbon films synthesized by filter-arc deposition," Thin Solid Films, Vol. 515, Issue 3, 2006, pp. 1053–1057 (SCI, IF = 1.935).
[21] Ching-Hsun Chao, Chien-Hung Chan, Fu-Chiao Wu, Jung-Jie Huang, Shui-Yang Lien, Ko-Wei Weng, Horng-Long Cheng, "Efficient hybrid organic/inorganic photovoltaic cells utilizing n-type pentacene and intrinsic/p-type hydrogenated amorphous silicon," Solar Energy Materials and Solar Cells, Vol. 95, Issue 8, August 2011, pp. 2407–2411 (SCI, IF = 4.746).
[22] Jung-Jie Huang, Yung-Pei Chen, Shui-Yang Lien, Ko-Wei Weng, Ching-Hsun Chao, "High mechanical and electrical reliability of bottom-gate microcrystalline silicon thin-film transistors on polyimide substrate," Current Applied Physics, Vol. 11, Issue 1, Supplement 1, January 2011, pp. S266–S270 (SCI, IF = 1.743).
[23] Chao-Chun Wang, Chueh-Yang Liu, Shui-Yang Lien*, Ko-Wei Weng, Jung-Jie Huang, Chia-Fu Chen, Dong-Sing Wuu, "Hydrogenated amorphous silicon–germanium thin films with a narrow band gap for silicon-based solar cells," Current Applied Physics, Vol. 11, Issue 1, Supplement 1, January 2011, pp. S50–S53 (SCI, IF = 1.743).
[24] Shui-Yang Lien*, Ko-Wei Weng, Jung-Jie Huang, Chia-Hsun Hsu, Chau-Te Shen, Chao-Chun Wang, Yang-Shih Lin, Dong-Sing Wuu, "Influence of CH4 flow rate on properties of HF-PECVD a-SiC films and solar cell application," Current Applied Physics, Vol. 11, Issue 1, Supplement 1, January 2011, pp. S21–S24 (SCI, IF = 1.743).
[25] Shui-Yang Lien, Yin-Yu Chang, Jui-Hao Wang, Ko-Wei Weng, Ching-Hsun Chao, Chia-Fu Chen, "Characterization of HF-PECVD a-Si:H thin film solar cells by using OES studies," Journal of Non-Crystalline Solids, Vol. 357, Issue 1, 1 January 2011, pp. 161–164 (SCI, IF = 1.492).
[26] Shui-Yang Lien, Chau-Te Shen, Chao-Chun Wang, Ko-Wei Weng, Ching-Hsun Chao, Chia-Fu Chen, "Effects of RF power and pressure on performance of HF-PECVD silicon thin film solar cells," Thin Solid Films, Vol. 518, Issue 24, October 2010, pp. 7233–7235 (SCI, IF = 1.935).
[27] Ching-Hsun Chao, Ko-Wei Weng, Horng-Long Cheng, Chien-Hung Chan, Shui-Yang Lien, "Boron-induced recrystallization of amorphous silicon film by a rapid thermal process," Thin Solid Films, Vol. 518, Issue 24, October 2010, pp. 7480–7482 (SCI, IF = 1.935).
[28] Ching-Hsun Chao, Chi-Lung Chang, Chien-Hung Chan, Shui-Yang Lien, Ko-Wei Weng, "Rapid thermal melted TiO2 nanoparticles into ZnO nanorod and its application for dye-sensitized solar cells," Thin Solid Films, Vol. 518, Issue 24, October 2010, pp. 7209–7212 (SCI, IF = 1.935).
[29] Shui-Yang Lien, Ming-Chen Tseng, Ching-Hsun Chao, Ko-Wei Weng, Hsin-Her Yu, Dong-Sing Wuu, "Tungsten filament effect on electronic properties of hot-wire CVD silicon films for heterojunction solar cell application," Thin Solid Films, Vol. 517, May 2009, pp. 4720–4723 (SCI, IF = 1.935).
[30] Ying-Chieh Lee, Ko-Wei Weng, Wen-Hsi Lee, "Study on low temperature sintering and microwave dielectric properties of Ba2Ti9O20-based ceramics," Journal of the Ceramic Society of Japan, Vol. 117, Issue 3, 2009, pp. 402–406 (SCI, IF = 1.03).
[31] Dung-Hau Huang, Cheng-Hsun Hsu, Yen-Chun Lin, Chi-Lung Chang, Ko-Wei Weng, Wei-Yu Ho, "Thermal stability behaviors of Cr(N,O)/CrN double-layered coatings by TGA/DTA analysis," Surface and Coatings Technology, Vol. 201, Issue 15, 2007, pp. 6681–6685 (SCI, IF = 2.141).
[32] K.S. Yao, D.Y. Wang, C.Y. Chang, K.W. Weng, L.Y. Yang, S.J. Lee, T.C. Cheng, C.C. Hwang, "Photocatalytic disinfection of phytopathogenic bacteria by dye-sensitized TiO2 thin film activated by visible light," Surface and Coatings Technology, Vol. 202, Issues 4–7, 2007, pp. 1329–1332 (SCI, IF = 2.141).
[33] Uei-Shin Chen, Wei-Jen Hsieh, Han C. Shih, Yee-Shyi Chang, Ko-Wei Weng, Da-Yung Wang, "Nanostructure and adhesion of electroless-plated Cu film on the self-catalyzed Cu using metal-plasma ion implanter," Nuclear Instruments and Methods in Physics Research B, Vol. 237, 2005, pp. 470–476 (SCI, IF = 1.042).
[34] Sheng Han, Hong-Ying Chen, Ku-Ling Chang, Ko-Wei Weng, Da-Yung Wang, Fu-Hsing Lu, Han C. Shih, "Effects of MEVVA-implanted chromium on the structure and properties of CrN film," Thin Solid Films, Vol. 447–448, 2004, pp. 425–429 (SCI, IF = 1.935).
[35] U.S. Chen, J.H. Lin, W.J. Hsieh, P.S. Shih, K.W. Weng, D.Y. Wang, "Exploring metal vapor vacuum arc implanted copper to catalyze electroless-plated copper film on a TaN/FSG/Si assembly," Journal of Vacuum Science and Technology B, Vol. 21(3), 2003, pp. 1029–1133 (SCI, IF = 1.419).
[36] K.W. Weng, C.L. Chang, D.Y. Wang, "Effect of ion energy on degradation of diamond-like carbon films exposed to high-energy bombardment from an ion implanter," Diamond and Related Materials, Vol. 11, 2002, pp. 1447–1453 (SCI, IF = 2.09).
[37] D.Y. Wang, K.W. Weng, "Microstructure analyses of CrN coating synthesized by a hybrid PVD and metal-plasma ion implantation process," Surface and Coatings Technology, Vol. 156, 2002, pp. 195–200 (SCI, IF = 2.141).
[38] D.Y. Wang, K.W. Weng, "Deposition of CrN coatings by current-modulating cathodic arc evaporation," Surface and Coatings Technology, Vol. 137, 2001, pp. 31–37 (SCI/EI, IF = 2.141).
[39] D.Y. Wang, K.W. Weng, "Study on metal-doped diamond-like carbon films synthesized by cathodic arc evaporation," Diamond and Related Materials, Vol. 9 (9–10), 2000, p. 1762 (SCI, IF = 2.09).
[40] D.Y. Wang, K.W. Weng, C.L. Chang, X.J. Guo, "Tribological performance of metal-doped diamond-like carbon films deposited by cathodic arc evaporation," Diamond and Related Materials, Vol. 9 (3–6), 2000, p. 831 (SCI, IF = 2.09).
[41] J.L. He, K.W. Weng, J.T. Chang, "TiNi thin films prepared by cathodic arc plasma ion plating," Thin Solid Films, Vol. 359, 2000, pp. 46–54 (SCI, IF = 1.935).
[42] D.Y. Wang, C.L. Chang, K.W. Weng, Y.W. Li, W.Y. Ho, "Improvement of interfacial integrity of (Ti,Al)N hard coatings deposited on high speed steel cutting tools," Surface and Coatings Technology, Vol. 120–121, 1999, pp. 388–394 (SCI, IF = 2.141).
[43] D.Y. Wang, K.W. Weng, C.L. Chang, W.Y. Ho, "Synthesis of Cr3C2 coatings for tribological applications," Surface and Coatings Technology, Vol. 120–121, 1999, pp. 616–622 (SCI, IF = 2.141).
[44] J.L. He, K.W. Weng, C.T. Chang, K.C. Chen, H.C. Lin, "Cavitation-resistant TiNi films deposited by using cathodic arc plasma ion plating," Wear, Vol. 233–235, 1999, pp. 104–110 (SCI, IF = 1.5).
Conference Paper
[1] D.Y. Wang, Y.W. Li, K.W. Weng, "Interfacial properties of multilayer AlTiN films deposited by cathodic arc evaporation," Proceedings of the Annual Conference of the Chinese Society for Materials Science, 1998.
[2] S.Y. Huang, K.W. Weng, C.L. Chang, Y.C. Hsieh, D.Y. Wang, "Study on the release properties of chromium carbide (Cr3C2) hard coatings for encapsulation molds," Proceedings of the Annual Conference of the Chinese Society for Materials Science, 1999.
[3] D.Y. Wang, K.W. Weng, S.Y. Hwang, "Study on metal-doped diamond-like carbon films synthesized by cathodic arc evaporation," The Fifth IUMRS International Conference on Advanced Materials (IUMRS-ICAM'99), Beijing, China, June 13–18, 1999. Submitted to Diamond and Related Materials.
[4] D.Y. Wang, K.W. Weng, "Deposition of CrN coatings by pulsed cathodic arc evaporation process," Proceedings of the Taiwan Association for Coating and Thin Film Technology, 2000.
[5] D.Y. Wang, C.L. Chang, K.W. Weng, "Characteristics of diamond-like carbon films deposited by unbalanced magnetron sputtering," submitted to Taiwan Diamond 2000 Conference, Taipei, Taiwan, 2000.
[6] D.Y. Wang, K.W. Weng, "Characterization of chromium nitride coatings deposited by a hybrid PVD and metal plasma ion implantation process," submitted to AVS 2000, Boston, October 2–6, 2000.
[7] D.Y. Wang, K.W. Weng, "Characterization of titanium nitride coatings deposited by a hybrid PVD and metal plasma ion implantation process," Proceedings of the Taiwan Association for Coating and Thin Film Technology, 2001.
[8] D.Y. Wang, K.W. Weng, "Microstructure analyses of CrN coating synthesized by a hybrid PVD and metal-plasma ion implantation process," Proceedings of the Annual Conference of the Chinese Society for Materials Science, 2001.
[9] W.H. Chen, C.H. Lin, W.J. Hsieh, P.S. Shih, K.W. Weng, C.C. Min, D.Y. Wang, H.C. Shih, "Study on electroless-plated copper films using Cu seed layers by metal vapor vacuum arc implantation," Proceedings of the Annual Conference of the Chinese Society for Materials Science, 2001.
[10] Ko-Wei Weng, Da-Yung Wang, "Tribological enhancement of CrN coating by co-implantation of vanadium and carbon ions," Proceedings of the Taiwan Association for Coating and Thin Film Technology, 2003.
[11] Ko-Wei Weng, Ya-Chi Chen, Da-Yung Wang, "On tribological performance of diamond-like carbon films synthesized by a hybrid filter-arc evaporation process," Proceedings of the Annual Conference of the Chinese Society for Materials Science, 2004.
[12] Ko-Wei Weng, Ya-Chi Chen, Da-Yung Wang, "On tribological performance of diamond-like carbon films synthesized by a hybrid filter-arc evaporation process," Special Issue on the 1st International Conference on Advanced Tribology, 2004.
[13] Ko-Wei Weng, Ya-Chi Chen, Da-Yung Wang, "Tribological enhancement of CrN coatings by ion implantation of vanadium and carbon ions," International Conference on Metallurgical Coatings and Thin Films, 2005.
[14] K.W. Weng, Y.L. Chen, C.S. Hsu, D.Y. Wang, "Improvement of DMFC electrode performance by Pt–Ru alloy catalysts prepared via metal plasma ion implantation," Proceedings of the Annual Conference of the Chinese Society for Materials Science, 2005.
[15] Ko-Wei Weng, Sheng Han, Yung-Lin Chen, Da-Yung Wang, "Characteristics of DMFC electrodes improved by MPII Pt–Ru catalysts," 8th International Workshop on Plasma-Based Ion Implantation and Deposition, 2005.
[16] K.W. Weng, Y.L. Chen, D.Y. Wang, "Improvement of DMFC electrode performance by multilayer Pt–Ru alloy catalysts prepared via metal plasma ion implantation," Proceedings of the Taiwan Association for Coating and Thin Film Technology, 2006.
[17] K.W. Weng, H.C. Chuang, Y.C. Chen, D.Y. Wang, "Study on light-filtering environmental thin films," Proceedings of the Taiwan Association for Coating and Thin Film Technology, 2006.
[18] Ko-Wei Weng, Ya-Chi Chen, Tai-Nan Lin, Da-Yung Wang, "Study on metal-doped diamond-like carbon films synthesized by filter-arc deposition process," International Conference on Metallurgical Coatings and Thin Films, 2006.
[19] Ko-Wei Weng, Sheng Han, Ya-Chi Chen, Da-Yung Wang, Han C. Shih, "The characteristics of diamond-like carbon film deposited by filter arc deposition," International Conference on Metallurgical Coatings and Thin Films, 2006.
[20] Ko-Wei Weng, Ya-Chi Chen, Da-Yung Wang, "Effects of MPII implantation on the characteristics of diamond-like carbon films," The International Conference on Technological Advances of Thin Films & Surface Coatings, 2006.
[21] Ko-Wei Weng, Ya-Chi Chen, Sheng Han, Chih-Sheng Hsu, Yung-Lin Chen, Da-Yung Wang, "Effects of ion implantation on the microstructure and residual stress of filter arc CrN films," The International Conference on Technological Advances of Thin Films & Surface Coatings, 2006.
[22] Ko-Wei Weng, Ya-Chi Chen, Han C. Shih, Sheng Han, "Effects of sp3 contents on the quality of amorphous diamond-like carbon by filter arc deposition," International Conference on Metallurgical Coatings and Thin Films, 2007.
[23] Ko-Wei Weng, Sheng Han, Ya-Chi Chen, Da-Yung Wang, "Effects of MPII-implanted titanium on the electrochromic properties of tungsten trioxide," International Conference on Metallurgical Coatings and Thin Films, 2007.
[24] Ko-Wei Weng, Yung-Lin Chen, Tai-Nan Lin, Da-Yung Wang, "Electrical enhancement of DMFC by MPII Pt–Ru/C multilayer catalysts," International Conference on Nanoscience and Technology, 2007.
[25] Ko-Wei Weng, Sheng Han, Ya-Chi Chen, Da-Yung Wang, "Characteristics of titanium implanted on electrochromic tungsten trioxide thin films," International Conference on Nanoscience and Technology, 2007.
[26] Ko-Wei Weng, Tai-Nan Lin, Da-Yung Wang, "Characterization of titanium nitride coatings deposited by metal plasma ion pre-implantation and cathodic arc evaporation," International Conference on Nanoscience and Technology, 2007.
[27] Ying-Chieh Lee, Ko-Wei Weng, Wei-Hua Lu, Wen-Hsi Lee, "The effect of SiO2 on dielectric properties and microstructures of Ba1-xSrxTiO3," The 6th Asian Meeting on Ferroelectrics, Taipei, Taiwan, August 2008.
[28] Ying-Chieh Lee, Wen-Hsi Lee, Ko-Wei Weng, Yen-Lin Huang, "Microwave dielectric properties of Nb2O3–Zn0.95Mg0.05TiO3+0.25TiO2 ceramics with Bi2O3 addition," The 9th International Symposium on Ceramic Materials and Components for Energy and Environmental Applications, Nov. 11–12, 2008.
Books & Technical Reports
[1] C.L. Ho, K.C. Chen, K.W. Weng (1997). "Fabrication of Ion-Coated Ti–Ni Intermetallic Thin Films." National Science Council Research Report, NSC 86-2216-E-035-018.
[2] K.W. Weng (1998). "Study on the Microstructure of TiNi Shape Memory Alloy Deposited by Cathodic Arc Evaporation." Master's Thesis, Graduate Institute of Materials Engineering, Feng Chia University.
[3] F.S. Hsueh, D.Y. Wang, K.W. Weng (1999). "Development of CrC and CrN Coating Technologies." Ministry of Economic Affairs SME R&D Assistance Program, Project No. P188902.
[4] D.Y. Wang, F.S. Hsueh, K.W. Weng (2001). "Surface Modification of Hard Coatings by Metal Plasma Source Ion Implantation." National Science Council Research Report, NSC 90-2216-E-045-001.
[5] W.Y. Ho, K.W. Weng (2002). "Development and Application of Metal Plasma Source Ion Implantation Technology." Commission of National Corporations, Ministry of Economic Affairs, Project No. 1F-890005.
[6] K.W. Weng (2002). "System Design and Process Development of Cathodic Arc Deposition Technology." Doctoral Dissertation, Graduate Institute of Materials Engineering, National Chung Hsing University.
[7] K.W. Weng (2003). "Fabrication of High-Performance Diamond-Like Carbon Films Using a Hybrid PVD System." National Science Council Research Report, NSC 92-2216-E-451-002.
[8] D.Y. Wang, K.W. Weng (2004). "Characterization of CrN Hard Coatings Surface-Modified by Metal Plasma Source." National Science Council Research Report, NSC 92-2216-E-451-005.
[9] K.W. Weng (2004). "Application of Ion-Implantation-Modified CrN Hard Coatings in Semiconductor Encapsulation Molds (2/2)." National Science Council Research Report, NSC 92-2216-E-451-003.
[10] K.W. Weng (2005). "Improvement of DMFC Electrode Performance Using Pt–Ru Alloy Catalysts Prepared by Metal Plasma Source Ion Implantation (1/2)." National Science Council Research Report, NSC 93-2216-E-451-003.
[11] D.Y. Wang, K.W. Weng (2005). "Fabrication of Solid Oxide Fuel Cell Electrode Materials by Plasma Technology — Subproject: Process Development and Characterization of Electrolyte and Anode Materials Modified by Plasma Ion Implantation (1/2)." National Science Council Research Report, NSC 93-2218-E-451-003.
[12] K.W. Weng (2005). "Improvement of DMFC Electrode Performance Using Pt–Ru Alloy Catalysts Prepared by Metal Plasma Source Ion Implantation (2/2)." National Science Council Research Report, NSC 94-2216-E-451-001.
[13] K.W. Weng (2005). "Fundamental Research on Renewable Energy Envelope Technology — Subproject 3: Study on Light-Filtering Environmental Thin Films (1/3)." National Science Council Research Report, NSC 94-2745-E-451-004-URD.
[14] D.Y. Wang, K.W. Weng (2006). "Fabrication of Solid Oxide Fuel Cell Electrode Materials by Plasma Technology — Subproject: Process Development and Characterization of Electrolyte and Anode Materials Modified by Plasma Ion Implantation (2/2)." National Science Council Research Report, NSC 94-2218-E-451-003.
[15] S. Han, K.W. Weng (2006). "Characterization of Nitride Thin Films Deposited by Hybrid Cathodic Arc Evaporation." Ministry of Education Industry–Academia Cooperation Program for Technical and Vocational Colleges, 2005.
[16] K.W. Weng (2006). "Fundamental Research on Renewable Energy Envelope Technology — Subproject 3: Study on Light-Filtering Environmental Thin Films (2/3)." National Science Council Research Report, NSC 95-2745-E-451-008-URD.
[17] K.W. Weng (2007). "Fundamental Research on Renewable Energy Envelope Technology — Subproject 3: Study on Light-Filtering Environmental Thin Films (3/3)." National Science Council Research Report, NSC 96-2745-E-451-004-URD.
[18] K.W. Weng (2008). "Enhancement of DMFC Performance Using Alloy Catalysts Prepared by a Multifunctional PVD System." NSC 97-2221-E-451-012.
[19] K.W. Weng (2009). "Surface Modification of Glass Molding Dies Using Metal Plasma Source." NSC 98-2221-E-451-008.
[20] K.W. Weng (2009). "Characterization of Low-Temperature Metal-Induced Polycrystalline Silicon Thin Films on Flexible Polyimide Substrates." NSC 98-2221-E-451-005.
[21] K.W. Weng (2010). "Study on Flexible Electrochromic Devices for Energy Conservation." NSC 99-2221-E-451-004.
[22] K.W. Weng (2011). "Application of TiO2 Photocatalytic Thin Films for Self-Cleaning Surfaces of Ocarina Products." NSC 100-2622-E-507-001-CC3.
[23] K.W. Weng, C.W. Liu, C.P. Chung, "Smart Light-Shading Device with Adjustable Light Transmittance," Taiwan Utility Model Patent No. M409704, 2011/08/21–2012/12/16.
[24] K.W. Weng, C.W. Liu, C.P. Chung, "Antibacterial Garden Shears," Taiwan Utility Model Patent No. M409699, 2011/08/21–2012/12/15.
[25] K.W. Weng, Y.P. Huang, C.T. Lee, T.L. Wu, C.H. Hung, "Visible-Light-Responsive Antibacterial Photocatalytic Faucet," Taiwan Utility Model Patent No. M440147, 2012/11/01–2022/05/08.
[26] C.T. Lee, W.C. Lin, K.W. Weng, Y.P. Huang, T.L. Wu, C.H. Hung, "Power-Generating Keyboard," Taiwan Utility Model Patent No. M440470, 2012/11/01–2022/04/12.
[27] C.T. Lee, K.W. Weng, Y.P. Huang, T.L. Wu, C.H. Hung, "Power-Generating Fly Swatter," Taiwan Utility Model Patent No. M439989, 2012/11/01–2022/04/12.
[28] C.T. Lee, C.C. Wang, W.H. Han, K.W. Weng, C.T. Chen, "Helmet with Airbag Safety Device," Taiwan Utility Model Patent No. M456711, 2013/07/11–2023/03/13.
[29] C.T. Lee, C.C. Wang, K.W. Weng, C.T. Chen, "Remote Pet Monitoring System," Taiwan Utility Model Patent No. M456693, 2013/07/11–2023/03/13.
[30] C.T. Lee, Y.T. Lee, K.W. Weng, C.T. Chen, H.M. Feng, "Random Code Touch Input Device," Taiwan Utility Model Patent No. M467955, 2013/12/11–2023/08/15.
[31] C.T. Lee, P.Y. Lin, K.W. Weng, C.T. Chen, "Portable Storage Device and Magnetic Adapter," Taiwan Utility Model Patent No. M467990, 2013/12/11–2023/08/15.
[32] C.T. Lee, C.C. Wang, C.C. Wu, K.W. Weng, C.T. Chen, "Ceiling Fan Device," Taiwan Utility Model Patent No. M472759, 2014/02/21–2023/08/25.
[33] C.T. Lee, C.R. Teng, C.H. Lee, K.W. Weng, C.T. Chen, "Weight Measuring Device," Taiwan Utility Model Patent No. M473514, 2014/03/01–2023/08/25.
[34] K.W. Weng, C.P. Chung, "All-Solid-State Green Energy Electrochromic Panel," Taiwan Invention Patent No. I437340, 2014/05/11–2030/12/15.
[35] K.W. Weng, C.T. Lee, C.M. Chen, Y.H. Chao, "UV-Resistant Transparent Bottle," Taiwan Patent No. M497094, 2015/03/11–2024/11/19.
Research Proposal
|
Project Title |
Role |
Period |
Funding Agency |
Status |
|
Science Outreach: Kinmen County Science Week and Smart Sustainability Science Experiment and Outreach Program (No. 115-2515-S-507-003; NT$900,000) |
PI |
2026/08–2027/07 |
National Science and Technology Council |
Ongoing |
|
Science Outreach: Kinmen Science Week and Net-Zero Sustainable Development Outreach Program (No. 114-2515-S-507-002; NT$920,000) |
PI |
2025/08–2026/07 |
National Science and Technology Council |
Completed |
|
Science Outreach: Kinmen County Science Week and Co-Building a Net-Zero Carbon Island Outreach Program (No. 113-2515-S-507-001; NT$920,000) |
PI |
2024/08–2025/07 |
National Science and Technology Council |
Completed |
|
Science Outreach: Kinmen County Public Science Expo and ESG Outreach Program for Offshore and Remote Areas, Theme 1 (No. 112-2515-S-507-001; NT$898,000) |
PI |
2023/08–2024/07 |
National Science and Technology Council |
Completed |
|
Science Outreach: Metaverse — Kinmen Offshore/Remote-Area Science Camp in the Metaverse, Theme 4 (No. 112-2515-S-507-003-MY2; NT$1,564,000) |
Co-PI |
2023/08–2025/07 |
National Science and Technology Council |
Completed |
|
Science Outreach: Happy Robotics Learning — Robotics Technology and Coding Education for Offshore/Remote Areas, Theme 3 (No. 111-2515-S-507-001; NT$730,000) |
Co-PI |
2022/08–2023/07 |
National Science and Technology Council |
Completed |
|
Science Outreach: I Am a Maker — Using Neuron Electronic Building Blocks to Enhance Science Learning Motivation and Creative Design in Offshore Kinmen, Theme 3 (No. 110-2515-S-507-001; NT$650,000) |
Co-PI |
2021/08–2022/07 |
National Science and Technology Council |
Completed |
|
Research on Antibacterial Thin Films (MOST 109-2221-E-507-006; NT$1,373,000) |
PI |
2020/08–2022/08 |
Ministry of Science and Technology |
Completed |
|
Science Outreach: Science in Everyday Life — Outreach Program, Theme 3 (No. 107-2515-S-507-002; NT$510,000) |
PI |
2018/09–2019/08 |
Ministry of Science and Technology |
Completed |
|
Research on Blue-Light-Blocking Electrochromic Thin Films (No. 107-2221-E-507-001; NT$978,000) |
PI |
2018/08–2019/07 |
Ministry of Science and Technology |
Completed |
|
Research on Smart-Controlled Electrochromic Thin Films (No. 106-2221-E-507-003; NT$1,299,000) |
PI |
2017/08–2018/07 |
Ministry of Science and Technology |
Completed |
|
Characterization of Fuzzy-Logic-Tunable Filtering-Band Electrochromic Thin Films Deposited by Bipolar Pulsed Magnetron Sputtering (No. 105-2221-E-507-001; NT$1,054,000) |
PI |
2016/08–2017/10 |
National Science Council |
Completed |
|
Characterization of Tunable Filtering-Band WMOx/TaMOx/NiMOx Electrochromic Thin Films (No. 104-2221-E-507-003; NT$1,038,000) |
PI |
2015/08–2016/10 |
National Science Council |
Completed |
|
Photocatalytic Characterization of TiO2/WO3/M Thin Films Deposited by Bipolar Pulsed Magnetron Sputtering – Part 2 (No. 102-2221-E-507-001-MY2; NT$1,212,000) |
PI |
2014/08–2015/07 |
National Science Council |
Completed |
|
Photocatalytic Characterization of TiO2/WO3/M Thin Films Deposited by Bipolar Pulsed Magnetron Sputtering – Part 1 (No. 102-2221-E-507-001-MY2; NT$1,189,000) |
PI |
2013/08–2014/07 |
National Science Council |
Completed |
|
Fabrication of Visible-Light-Responsive TiO2/WO3/M Photocatalytic Thin Films Using a Hybrid PVD System (NSC 101-2221-E-507-001; NT$1,006,000) |
PI |
2012/08–2013/07 |
National Science Council |
Completed |
|
Application of TiO2 Photocatalytic Thin Films for Self-Cleaning Surfaces of Ocarina Products (NSC 100-2622-E-507-001-CC3; NT$519,284) |
PI |
2011/06–2012/05 |
National Science Council |
Completed |
|
Improving Power Generation Stability of High-Concentration Solar Systems by Integrating Supercapacitors (NSC 100-2218-E-507-001; NT$669,000) |
Co-PI |
2011/08–2012/07 |
National Science Council |
Completed |
|
Diagnostic Project on Reducing Bubble and Pinhole Defects in Ceramic Glaze Surfaces (CP0980484; NT$72,000) |
PI |
2011/07–2011/12 |
Ministry of Economic Affairs |
Completed |
|
Analysis of the Effects of Additives in Aluminum Alloys on the Properties of Aluminum Doors (CF0990328; NT$72,000) |
PI |
2011/07–2011/12 |
Ministry of Economic Affairs |
Completed |
|
2011 International Year of Chemistry Series: Mobile Chemistry Museum Comes to Kinmen (100A1014; NT$200,000) |
PI |
2011/05/26–2011/05/27 |
Kinmen County Education Department |
Completed |
|
Structural Analysis and Filtering-Characteristic Measurement Consulting Project for Electrochromic Devices (PC099122124; NT$72,000) |
PI |
2011/03–2011/08 |
Ministry of Economic Affairs |
Completed |
|
Study on Flexible Electrochromic Devices for Energy Conservation (NSC 99-2221-E-451-004; NT$789,000) |
PI |
2010/08–2011/07 |
National Science Council |
Completed |
|
Functional Ceramic Coating on Textile Machinery to Increase Production Speed (PC099171482; NT$60,000) |
PI |
2010/08–2010/12 |
Ministry of Economic Affairs |
Completed |
|
Diagnostic Project on Self-Cleaning Surface Modification of Ocarina Products (PC099161005; NT$72,000) |
PI |
2010/07–2010/12 |
Ministry of Economic Affairs |
Completed |
|
Talent Cultivation Program for Science Parks: Practical Module Course on Optical Design and Vacuum Technology (PC098160615; NT$811,111) |
PI |
2010/07–2011/07 |
National Science Council |
Completed |
|
Diagnostic Project on Magnetic Field Measurement and Probe Surface Modification for a Long-Wave Electromagnetic Therapy Device (NT$72,000) |
PI |
2009/11–2010/04 |
Ministry of Economic Affairs |
Completed |
|
Surface Modification of Glass Molding Dies Using Metal Plasma Source (No. 98-2221-E-451-008; NT$735,000) |
PI |
2009/08–2010/07 |
National Science Council |
Completed |
|
Characterization of Low-Temperature Metal-Induced Polycrystalline Silicon Thin Films on Flexible Polyimide Substrates (No. 98-2221-E-451-005; NT$704,000) |
PI |
2009/08–2010/07 |
National Science Council |
Completed |
|
Planning and Design, Exhibition Setup, and Media Promotion for the 2010 "Flowers in Changhua" Series (P0980125; NT$4,026,680) |
Co-PI |
2010/02/14–2010/02/21 |
Changhua County Government |
Completed |
|
Enhancement of DMFC Performance Using Alloy Catalysts Prepared by a Multifunctional PVD System (No. 97-2221-E-451-012; NT$675,000) |
PI |
2008/08–2009/07 |
National Science Council |
Completed |
|
Fundamental Research on Renewable Energy Environmental Control Technology — Subproject 3: Light-Filtering Environmental Thin Films (3/3) (No. 96-2745-E-451-004-URD; NT$836,000) |
PI |
2007/08–2008/07 |
National Science Council |
Completed |
|
Fundamental Research on Renewable Energy Environmental Control Technology — Overall Project (3/3) (No. 96-2745-E-451-001-URD; NT$125,000) |
Co-PI |
2007/08–2008/07 |
National Science Council |
Completed |
|
Shared Precision Instrument Service Program, Mingdao Management College (No. 96-2731-M-451-001; NT$216,000) |
PI |
2007/01–2007/12 |
National Science Council |
Completed |
|
Extending Forging Die Life Using CrAlSiN Superhard Coatings (NT$485,000) |
Co-PI |
2007/10–2008/11 |
National Science Council |
Completed |
|
Fundamental Research on Renewable Energy Environmental Control Technology — Subproject 3: Light-Filtering Environmental Thin Films (2/3) (No. 95-2745-E-451-008-URD; NT$811,000) |
PI |
2006/08–2007/07 |
National Science Council |
Completed |
|
Fundamental Research on Renewable Energy Environmental Control Technology — Overall Project (2/3) (No. 95-2745-E-451-005-URD; NT$157,000) |
Co-PI |
2006/08–2007/07 |
National Science Council |
Completed |
|
Characterization of Nitride Thin Films Deposited by Hybrid Cathodic Arc Evaporation (NT$400,000) |
Co-PI |
2006/01–2006/12 |
Ministry of Education |
Completed |
|
Fabrication of Solid Oxide Fuel Cell Electrode Materials by Plasma Technology — Subproject 2 (2/2) (No. 94-2218-E-451-003; NT$815,000) |
Co-PI |
2005/11–2006/10 |
National Science Council |
Completed |
|
Fundamental Research on Renewable Energy Environmental Control Technology — Subproject 3: Light-Filtering Environmental Thin Films (1/3) (No. 94-2745-E-451-004-URD; NT$1,015,000) |
PI |
2005/08–2006/07 |
National Science Council |
Completed |
|
Fundamental Research on Renewable Energy Environmental Control Technology — Overall Project (1/3) (No. 94-2745-E-451-001-URD; NT$157,000) |
Co-PI |
2005/08–2006/07 |
National Science Council |
Completed |
|
Improvement of DMFC Electrode Performance Using Pt–Ru Alloy Catalysts Prepared by Metal Plasma Source Ion Implantation (2/2) (No. 94-2216-E-451-001; NT$827,000) |
PI |
2005/08–2006/07 |
National Science Council |
Completed |
|
Fabrication of Solid Oxide Fuel Cell Electrode Materials by Plasma Technology — Subproject 2 (1/2) (No. 93-2218-E-451-003; NT$718,300) |
Co-PI |
2004/11–2005/10 |
National Science Council |
Completed |
|
Improvement of DMFC Electrode Performance Using Pt–Ru Alloy Catalysts Prepared by Metal Plasma Source Ion Implantation (1/2) (No. 93-2216-E-451-003; NT$697,000) |
PI |
2004/08–2005/07 |
National Science Council |
Completed |
|
Characterization of CrN Hard Coatings Surface-Modified by Metal Plasma Source (No. 92-2216-E-451-005; NT$841,400) |
PI |
2003/08–2004/07 |
National Science Council |
Completed |
|
Fabrication and Characterization of Novel High-Performance CO-Poisoning-Resistant Nano-Scale Catalyst Electrodes (No. 92-2212-E-451-001; NT$599,500) |
Co-PI |
2003/08–2004/07 |
National Science Council |
Completed |
|
Fabrication of High-Performance Diamond-Like Carbon Films Using a Hybrid PVD System (No. 92-2216-E-451-002; NT$403,900) |
PI |
2003/01–2003/07 |
National Science Council |
Completed |