國立成功大學電機工程學系 教師個人頁面
English Version
黃英原 助理教授
地址
電機系館11樓92B11室
Email
TEL
06-2757575 ext.62342
實驗室
太陽能與微電子元件實驗室
(R92B33/ext.62400-1250)
學經歷
學歷
2021
Ph.D., Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA
2010
國立台灣大學光電工程研究所碩士
2008
國立台灣大學物理系學士
經歷
2023/8-Present
國立成功大學電機系暨微電子所暨奈米積體電路工程學位學程助理教授
2024/2-Present
國立成功大學智慧半導體及永續製造學院半導體製程學位學程助理教授(從聘)
2026/1-Present
IEEE 國際電機電子工程師學會 Tainan Section 秘書長
2026/1-Present
中華民國光電學會副秘書長
2025/9-Present
IEEE 國際電機電子工程師學會 Photonics Society Tainan Chapter (PHO36) 財務長
2022/8-2023/7
國立陽明交通大學照明與能源光電研究所助理教授
2014/8-2021/12
美國喬治亞理工學院電機與計算機工程學系教學與研究助理
2010/10-2013/8
台積電/台積固態照明 元件技術開發部 資深工程師
研究領域
  • High-efficiency silicon solar cells
  • Tunnel Oxide Passivated Contacts
  • Light Emitting Diodes
  • Semiconductor device simulation, fabrication and characterization
  • Diamond semiconductor, wide-bandgap semiconductor
  • Diamond thermal management, heat spreading, thermal interface materials
著作
期刊論文( Journal )
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  1. S. Dasgupta, Y.-W. Ok, V. D. Upadhyaya, W.-J. Choi, Y.-Y. Huang, S. Duttagupta, and A. Rohatgi, "Novel Process for Screen-Printed Selective Area Front Polysilicon Contacts for TOPCon Cells using Laser Oxidation," IEEE Journal of Photovoltaics, 2022, doi: 10.1109/JPHOTOV.2022.3196822.
  2. Y.-Y. Huang, Y.-W. Ok, K. Madani, W. Choi, A. Upadhyaya, V. Upadhyaya, B. Rounsaville, V. Chandrasekaran, and A. Rohatgi, "~23% rear side poly-Si/SiO2 passivated silicon solar cell with optimized ion-implanted boron emitter and screen-printed contacts," Solar Energy Materials and Solar Cells, vol. 230, p. 111183, 2021, doi: 10.1016/j.solmat.2021.111183.
  3. A. Jain, W.-J. Choi, Y.-Y. Huang, B. Klein, and A. Rohatgi, "Design, Optimization, and In-Depth Understanding of Front and Rear Junction Double-Side Passivated Contacts Solar Cells," IEEE Journal of Photovoltaics, pp. 1-8, 2021, doi: 10.1109/jphotov.2021.3086461
  4. Y.-Y. Huang, Y.-W. Ok, K. Madani, W. Choi, A. D. Upadhyaya, V. D. Upadhyaya, and A. Rohatgi, "Fully screen-printed bifacial large area 22.6% N-type Si solar cell with lightly doped ion-implanted boron emitter and tunnel oxide passivated rear contact," Solar Energy Materials and Solar Cells, vol. 214, p. 110585, 2020/08/15/ 2020, doi: https://doi.org/10.1016/j.solmat.2020.110585. Highlighted by PV Magazine: https://www.pv-magazine.com/2021/06/02/bifacial-n-type-topcon-cell-with-22-6-efficiency/
  5. K. Madani, A. Rohatgi, K. H. Min, H.-e. Song, Y.-Y. Huang, A. D. Upadhyaya, V. Upadhyaya, B. Rounsaville, and Y.-W. Ok, "Comparison of Passivation Properties of Plasma-Assisted ALD and APCVD Deposited Al2O3 with SiNx Capping," Solar Energy Materials and Solar Cells, 2020
  6. Y.-W. Ok, A. M. Tam, Y.-Y. Huang, V. Yelundur, A. Das, A. M. Payne, V. Chandrasekaran, A. D. Upadhyaya, A. Jain, and A. Rohatgi, "Screen printed, large area bifacial N-type back junction silicon solar cells with selective phosphorus front surface field and boron doped poly-Si/SiOx passivated rear emitter," Appl Phys Lett, vol. 113, no. 26, p. 263901, 2018, doi: 10.1063/1.5059559
  7. S.-H. Hsu, Y.-Y. Huang, Y.-D. Wu, K. Yang, L.-H. Lin, and L. Milor, "Optimal sampling for accelerated testing in 14 nm FinFET ring oscillators," Microelectronics Reliability, vol. 114, p. 113753, 2020, doi: 10.1016/j.microrel.2020.113753.
  8. S.-H. Hsu, Y.-Y. Huang, Y.-D. Wu, K. Yang, L.-H. Lin, and L. Milor, "Extraction of wearout model parameters using on-line test of an SRAM," Microelectronics Reliability, vol. 114, p. 113756, 2020, doi: 10.1016/j.microrel.2020.113756.
  9. Y.-Y. Huang, L.-Y. Chen, C.-H. Chang, Y.-H. Sun, Y.-W. Cheng, M.-Y. Ke, Y.-H. Lu, H.-C. Kuo, and J. Huang, "Investigation of low-temperature electroluminescence of InGaN/GaN based nanorod light emitting arrays," Nanotechnology, vol. 22, no. 4, p. 045202, Jan 28 2011, doi: 10.1088/0957-4484/22/4/045202. Reported and selected as a feature article by Nanotechweb.org, “Investigating low-temperature optical properties of nanorod LED arrays” ( http://nanotechweb.org/cws/article/lab/44997 )
  10. L.-Y. Chen, H.-H. Huang, C.-H. Chang, Y.-Y. Huang, Y.-R. Wu, and J. Huang, "Investigation of the strain induced optical transition energy shift of the GaN nanorod light emitting diode arrays," Opt. Express, vol. 19, no. S4, pp. A900-A907, 2011/07/04 2011, doi: 10.1364/OE.19.00A900.
  11. Y.-H. Sun, Y.-W. Cheng, S.-C. Wang, Y.-Y. Huang, C.-H. Chang, S.-C. Yang, L.-Y. Chen, M.-Y. Ke, C.-K. Li, Y.-R. Wu, and J. Huang, "Optical Properties of the Partially Strain Relaxed InGaN/GaN Light-Emitting Diodes Induced by p-Type GaN Surface Texturing," IEEE Electr Device L, vol. 32, no. 2, pp. 182-184, 2011, doi: 10.1109/led.2010.2093503
  12. L.-Y. Chen, Y.-Y. Huang, C.-H. Chang, Y.-H. Sun, Y.-W. Cheng, M.-Y. Ke, C.-P. Chen, and J. Huang, "High performance InGaN/GaN nanorod light emitting diode arrays fabricated by nanosphere lithography and chemical mechanical polishing processes," Opt. Express, vol. 18, no. 8, pp. 7664-7669, 2010/04/12 2010, doi: 10.1364/OE.18.007664 Reported by SPIE.org “High-brightness light-emitting diodes” ( https://spie.org/news/3403-high-brightness-light-emitting-diodes )
  13. C.-P. Chen, P.-H. Lin, Y.-J. Hung, S.-S. Hsu, L.-Y. Chen, Y.-W. Cheng, M.-Y. Ke, Y.-Y. Huang, C.-H. Chang, and C.-H. Chiu, "Investigation of light absorption properties and acceptance angles of nanopatterned GZO/a-Si/p+-Si photodiodes," Nanotechnology, vol. 21, no. 21, p. 215201, 2010.
  14. K.-M. Pan, Y.-W. Cheng, L.-Y. Chen, Y.-Y. Huang, M.-Y. Ke, C.-P. Chen, Y.-R. Wu, and J. Huang, "Polarization-Dependent Sidewall Light Diffraction of LEDs Surrounded by Nanorod Arrays," IEEE Photonics Technology Letters, vol. 21, no. 22, pp. 1683-1685, 2009, doi: 10.1109/lpt.2009.2031682
  15. Y.-Y. Shih, Y.-Y. Chen, W.-Y. Hsieh, Y.-Y. Huang, C. Chang, J.-C. Chen, C.-I. Lin, S.-J. Wang, and F.-S. Jaw, "Dynamic mapping of amphetamine response in the rat brain using bold and iron techniques," Biomedical Engineering: Applications, Basis and Communications, vol. 19, no. 03, pp. 157-163, 2007
會議論文( Conference )
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  1. Y. Tzeng, C.-P. Lin, C.-J. Fu, I.-L. Chiu, Y.-Y. Huang, P.-C. Wei, H.-Y. Chen, and K. Chiang, "Diamond Thermal Solutions for Emerging High-Heat-Flux and High-Power Semiconductor Packaging," in 2026 International Conference on Electronics Packaging and Hybrid Bonding Symposium (ICEP-HBS), 14–18 April 2026 2026, pp. 229–230, doi: 10.23919/ICEP-HBS69241.2026.11550587.
  2. C.-P. Lin, C.-J. Huang, H.-C. Chang, S.-Y. Chen, and Y.-Y. Huang, "Cost-Effective Metallization of N-Type TOPCon Solar Cells Using AgCoated Copper Paste," in 52nd IEEE Photovoltaic Specialists Conference, Montreal, Canada, 2025.
  3. J.-C. Chen, C.-P. Lin, Y.-P. Lin, H.-C. Chang, and Y.-Y. Huang, "Development of Bifacial Passivated Contacts Solar Cells with SiC/SiO2 as Front Transparent Passivated Contacts," presented at the 52nd IEEE Photovoltaic Specialists Conference, SEATTLE, WA, 2024.
  4. Y.-A. Li, C.-P. Lin, and Y.-Y. Huang, "Simulation and design optimization of interdigitated back contact silicon solar cells with dopant-free asymmetric hetero-contacts," in 41st European Photovoltaic Solar Energy Conference, 2024.
  5. Y.-P. Lin, C.-P. Lin, J.-C. C. , H.-C. Chang, and Y.-Y. Huang, "Numerical Modeling and Design Optimization of Industrial Tunnel Oxide Passivated Contact Solar Cells with Selective Passivated Contacts on the Front," presented at the 41st European Photovoltaic Solar Energy Conference, 2024.
  6. S. Dasgupta, Y.-W. Ok, V. D. Upadhyaya, W.-J. Choi, Y.-Y. Huang, S. Duttagupta, and A. Rohatgi, "Novel Laser Oxidation for Screen-Printed Selective Area Front Poly-Silicon Contacts for TOPCon Cells," in 2022 IEEE 49th Photovoltaics Specialists Conference (PVSC), 5-10 June 2022 2022, pp. 0366-0366, doi: 10.1109/PVSC48317.2022.9938534.
  7. Y.-Y. Huang, A. Jain, W.-J. Choi, K. Madani, Y.-W. Ok, and A. Rohatgi, "Modeling and Understanding of Rear Junction Double-Side Passivated Contact Solar Cells with Selective Area TOPCon on Front," IEEE 48th Photovoltaic Specialists Conference (PVSC), 2021
  8. W.-J. Choi, K. Madani, Y.-Y. Huang, A. Jain, Y.-W. Ok, V. D. Upadhyaya, M. G. Kang, S. Choi, and A. Rohatgi, "Optimization of In-situ and Ex-situ doped p+ Passivating Contact for High Efficiency p-TOPCon Solar Cell Application," IEEE 48th Photovoltaic Specialists Conference (PVSC), 2021.
  9. A. Jain, W.-J. Choi, Y.-Y. Huang, B. Klein, and A. Rohatgi, "Design, Optimization, and In-Depth Understanding of Front and Rear Junction Screen-Printed Double-Side Passivated Contacts Solar Cells," IEEE 47th Photovoltaic Specialists Conference (PVSC), 2020
  10. W.-J. Choi, A. Jain, Y.-Y. Huang, Y.-W. Ok, and A. Rohatgi, "Quantitative Understanding and Implementation of Screen Printed p+ Poly-Si/Oxide Passivated Contact to Enhance the Efficiency of p-PERC Cells," IEEE 47th Photovoltaic Specialists Conference (PVSC), 2020
  11. A. Upadhyaya, K. Madani, V. Upadhyaya, B. Rounsaville, Y.-Y. Huang, and A. Rohatgi, "Boron Selective Emitter Formation With Un-metallized J0e of 13fA/cm2 For Silicon Solar Cell Applications," IEEE 47th Photovoltaic Specialists Conference (PVSC), 2020.
  12. Y.-Y. Huang, Y.-W. Ok, A. D. Upadhyaya, V. D. Upadhyaya, K. Madani, and A. Rohatgi, "Large Area 21.6% Efficiency Front Junction N-type Cell with Screen Printed Tunnel Oxide Passivated Poly-Si Rear Contact," IEEE 46th Photovoltaic Specialists Conference (PVSC), 2019.
  13. S.-H. Hsu, Y.-Y. Huang, K. Yang, and L. Milor, "Identification of Failure Modes for Circuit Samples with Confounded Causes of Failure," IEEE International Symposium on On-Line Testing and Robust System Design, 2019.
  14. Y.-W. Ok, A. D. Upadhyaya, B. Rounsaville, Y.-Y. Huang, V. D. Upadhyaya, and A. Rohatgi, "Screen Printed, Large Area Bifacial N-PERT cells with Tunnel Oxide Passivated Back Contact," 2017 IEEE 44th Photovoltaic Specialist Conference (PVSC), 2017.
  15. A. M. Tam, Y.-Y. Huang, C.-W. Chen, Y.-W. Ok, and A. Rohatgi, "Design of selective emitter profiles for high efficiency solar cells under manufacturing technology constraints," IEEE 43rd Photovoltaic Specialists Conference (PVSC), 2016.
  16. Y. Tao, V. Upadhyaya, Y.-Y. Huang, C.-W. Chen, K. Jones, and A. Rohatgi, "Carrier selective tunnel oxide passivated contact enabling 21.4% efficient large-area N-type silicon solar cells," IEEE 43rd Photovoltaic Specialists Conference (PVSC), 2016.
  17. L.-Y. Chen, C.-H. Chang, Y.-Y. Huang, and J. Huang, "Low-temperature electroluminescent behaviors of InGaN/GaN-based nanorod light emitting diode arrays," in Eleventh International Conference on Solid State Lighting, 2011, vol. 8123: International Society for Optics and Photonics, p. 81230T
  18. C.-H. Chang, L.-Y. Chen, Y.-Y. Huang, and J. Huang, "Investigation of Low-Temperature Optical Characteristics of InGaN/GaN Based Nanorod Light Emitting Arrays," in Proceedings of IEEE Conference on Photonics and Optoelectronics, 2011
  19. L.-Y. Chen, Y.-Y. Huang, C.-H. Chang, and J. Huang, "Nano-patterning for LED light extraction and for nanorod LED array formation," in Tenth International Conference on Solid State Lighting, 2010: International Society for Optics and Photonics, pp. 77840B-77840B-6
  20. L.-Y. Chen, Y.-Y. Huang, C.-H. Chang, and J. Huang, "Low Ideality Factor and High Output Power Density Nanorod LED Array with Chemical Mechanical Process," in ECS Meeting Abstracts, 2010: The Electrochemical Society, doi: 10.1149/ma2010-02/2/114
  21. L.-Y. Chen, Y.-Y. Huang, C.-S. Chang, and J. Huang, "High output power density and low leakage current of InGaN/GaN nanorod light emitting diode with mechanical polishing process," in International Conference on Compound Semiconductor Manufacturing Technology, 2010: Citeseer, pp. 251-256
  22. L.-Y. Chen, Y.-Y. Huang, P.-h. Lin, M.-Y. Ke, and J. Huang, "Nanorod light emitting diode arrays with highly concentrated radiation profile and strain relaxed structure," in 2009 Conference on Lasers and Electro-Optics and 2009 Conference on Quantum electronics and Laser Science Conference, 2009: IEEE, pp. 1-2.
  23. Y.-W. Cheng, T.-C. Lu, M.-Y. Ke, K.-M. Pan, L.-Y. Chen, H.-L. Chiang, Y.-Y. Huang, and J. Huang, "Application of nanosphere lithography to the fabrication of nanorod LEDs and to the performance enhancement of conventional LEDs," in 2009 Asia Communications and Photonics conference and Exhibition (ACP), 2009, vol. 2009: IEEE, pp. 1-8
專利
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  1. 腦圖譜之多目標影像分析方法。施彥宇、黃英原、陳右穎、張程、陳志成、趙福杉。中華民國專利號I350162
其他
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研究計劃
  1. 計畫主持人 - 面向太瓦級光電之高效率雙面 TOPCon 矽晶太陽能電池:局部化前表面載子選擇性鈍化接觸、雷射增強接觸最佳化(LECO)與低銀/銅金屬化整合 (國科會 NSTC 115-2221-E-006-105 - )
  2. 計畫主持人 - 高效率低軌衛星(LEO)用太陽能電池 (115年聯合再生能源產學合作計畫 )
  3. 計畫主持人 - 常閉型氫終端鑽⽯場效電晶體之開發與特性分析 (114-116年 台積電產學合作計畫)
  4. 計畫共同主持人 - 具晶背供電架構前/後段3D堆疊電晶體整合平台之發展(1/3) (國科會 NSTC 115-2640-E-006-013 -)
  5. 計畫共同主持人 - 鑽石及鑽石-X複合半導體技術和高功率電子元件之設計與製作的研發(1/ 3) (國科會 NSTC 115-2640-E-007-008 -)
  6. 計畫主持人 - 財團法人國家實驗研究院 台灣半導體研究中心 2026 TSRI奈米產業高階人才養成計畫 (JDP115-Y1-097)
  7. 計畫主持人 - 114年度挑戰矽晶極限之矽基太陽電池技術開發計畫 - 穿隧氧化鈍化背接觸矽晶太陽電池模擬。財團法人工業技術研究院 學界分包研究計畫
  8. 計畫主持人 - 財團法人國家實驗研究院 台灣半導體研究中心 2025 TSRI奈米產業高階人才養成計畫 (JDP114-Y1-069)
  9. 計畫主持人 - 研發>26%效率之可商業化載子選擇性鈍化接觸矽晶太陽能電池 (國科會 NSTC 113-2222-E-006-004-)
  10. 計畫主持人 - 113年度高效率、智慧型太陽光電產品開發計畫(3/3)- 矽晶先進電池結構模擬。財團法人工業技術研究院 學界分包研究計畫
  11. 計畫主持人 - 教育部玉山青年學者計畫 (112/8~117/7) (MOE-112-YSFEE-0005-002-P1)
  12. 計畫主持人 - 112年度高效率、智慧型太陽光電產品開發計畫(2/3)- biPC太陽電池模擬。財團法人工業技術研究院 學界分包研究計畫
  13. 計畫主持人 - 下世代高效率雙面選擇性穿隧氧化鈍化接觸矽晶太陽能電池之開發。國立陽明交通大學111年教師增能計畫。
開授課程
112學年度上學期
112學年度下學期
113學年度上學期
113學年度下學期
114學年度下學期
指導學生
本學年度 實驗室成員
博士班
林峻平
柳詔華
傅琦禎
碩士班
張渤楊
李昱輝
陳昱呈
李會中
沈奕安
徐邦家
賴珩儇
戴振軒
王灝勛
馬庭寬
張嘉翔
林祐誠
鄭鈞祐
張經杰
賴聲強
預研生
何誠元
賴秉宥
趙立恆
專題生
Vicky Thakur
張昀瑄
鄧凱元
已畢業學生
碩士
112 (NYCU)
陳勁成   林宜平   李祐安   洪唯善
113
黃聖翔
114
林宥瀚   王翔明   劉原瑞   陳柏璋   葉宗翰   謝懷賢   邱韋霖   邱翊倫   陳懷寬   吳柏翰
特殊榮譽
  1. 指導學生葉宗翰榮獲2026奈米元件電路與技術研討會(SNDCT)口頭報告獎入圍獎
  2. 指導專題生張昀瑄榮獲國科會115年度大專生參與專題研究計畫 (115-2813-C-006-223-E)
  3. 指導學生陳勁成、林宜平、李祐安榮獲國立陽明交通大學光電學院112學年度研究類優秀畢業生獎
  4. 指導學生陳勁成榮獲2023年國立陽明交通大學優良教學助理獎
  5. 指導學生林宜平、李祐安榮獲2023年國立陽明交通大學光電學院推薦之優秀教學助理
  6. 鈺槙青年講座
  7. 教育部玉山青年學者
  8. TSMC SSL Outstanding Engineer Project Award, 2012 Q2
  9. TSMC SSL Outstanding Engineer Project Award, 2011 Q4
  10. 中華民國斐陶斐榮譽學會2010年榮譽會員