國立陽明交通大學光電學院

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首頁系所介紹照明與能源光電研究所內文

系所介紹

師資陣容

黃英原

職稱:助理教授

辦公室位置:
R317
辦公室電話:
#57781
信箱:
yingyuanhuang@nycu.edu.tw
網頁:
專長:
矽基太陽能電池 Silicon Solar Cells
Photovoltaics
Tunnel Oxide Passivated Contacts
研究:
Silicon Solar Cells
Photovoltaics
Tunnel Oxide Passivated Contacts

學歷一覽

  • 學校名稱

    國別

    系所

    學位

    起迄年月

  • Georgia Institute of Technology

    國別:USA

    系所:School of Electrical and Computer Engineering

    學位:Doctor of Philosophy

    起迄年月:

  • 國立台灣大學

    國別:台灣

    系所:光電工程學研究所

    學位:碩士

    起迄年月:

  • 國立台灣大學

    國別:台灣

    系所:物理學系

    學位:學士

    起迄年月:

經歷一覽

  • 服務機關

    職稱

    部門/系所

    擔任職務

    起迄年月

  • 台積電/台積固態照明

    職稱:資深工程師

    部門/系所:元件技術開發部

    擔任職務:資深工程師

    起迄年月:

論文著作

Published Journal Papers
J1. 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. (Impact factor: 7.267)
J2. 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 (Impact factor: 3.887)
J3. 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. (Impact factor: 7.267)
Highlighted by PV Magazine: https://www.pv-magazine.com/2021/06/02/bifacial-n-type-topcon-cell-with-22-6-efficiency/
J4. 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 (Impact factor: 7.267)
J5. 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 (Impact factor: 3.791)
J6. 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. (Impact factor: 1.589)
J7. 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. (Impact factor: 1.589)
J8. 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. (Impact factor: 3.874)
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 )
J9. 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. (Impact factor: 3.894)
J10. 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 (Impact factor: 4.187)
J11. 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 (Impact factor: 3.894)
Reported by SPIE.org “High-brightness light-emitting diodes” ( https://spie.org/news/3403-high-brightness-light-emitting-diodes )
J12. 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. (Impact factor: 3.874)
J13. 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 (Impact factor: 2.468)
J14. 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

Conference Presentations with Proceedings:
C1. 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
C2. 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.
C3. 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
C4. 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
C5. 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.
C6. 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.
C7. 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.
C8. 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.
C9. 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.
C10. 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.
C11. 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
C12. 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
C13. 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
C14. 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
C15. 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
C16. 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.
C17. 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

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