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本所成員-教師
 
Adjunct Professor Name Education Link
  Si-Chen Lee Ph.D., Stanford Univ., U.S.A. Profile | Publication | Website | Laboratory
E-mail sclee@ntu.edu.tw
Office EE Building Ⅱ, R440
Office hour
Tel +886-2-33663640
Website http://sclee.ee.ntu.edu.tw/
Research Topics 1. Quantum Dot/Ring Infrared Photodetector with Application in multi-channel Infrared (3~5  and 8~12 dual band) and THz Detection
2. Amorphous and Poly-Si Thin Film Transistor (TFT) on flexible substrate
3. Development of a new type active-matrix organic light emitting diode (AMOLED) with an amorphous solar cell inserted in-between the OLED and TFT
4. Narrow Bandwidth, High Temperature Operated Plasmonic Thermal Emitter
Biography

Si-Chen Lee (李嗣涔) was born in Taiwan, on August 13, 1952.  He received the B.S. degree in electrical engineering from National Taiwan University in 1974 and Ph.D degree in electrical engineering from Stanford University in 1980 with a work consisting of experimental investigation of the AlGaAs/GaAs multi-heterojunction properties.

From 1980 to 1982, he worked at Energy Conversion Devices Inc. concerning the application of amorphous silicon hydrogen alloy to the solar cells.  He joined the Department of Electrical Engineering, National Taiwan University in 1982 as a visiting associate professor, and is a professor now.

He served as the chairman of the Department from 1988 to 1992 and  the Dean of academic affairs of National Taiwan University from 1996 to 2002. He is now the President of National Taiwan University. His current research interests are in the device applications and the growth kinetics of InAs/GaAs strained layer quantum dot/ring infrared photodetector incorporated with photonic crystal filter for applications to the pollution detection and biological reaction of cells. He is developing metallic photonic crystal infrared thermal emitter based on surface plasmon stimulated emission.  In addition, he is also interested in hydrogenated and deuterated amorphous and poly-silicon (carbon, germanium) hydrogen material and devices, such as thin film transistors and neural network image sensors.  He has moved into the area of Si nanowire transistors and successfully developed the electric field assisted directional growth of Si nanowire. Since 1988, he pioneered a research work on the Chinese traditional qigong and somatic science.

Dr. Lee is an IEEE Fellow, member of the Chinese Institute of Electrical Engineering, he has received Dr. Sun Yat-San Academic award in 1987, five consecutive outstanding research awards of National Science Council from 1986 to 1996. He has been elected as a member of The Asia-Pacific Academy of Materials (APAM) in 1997, and received IEEE Third Millennium Medal for outstanding achievements and contributions in the area of Semiconductor Devices in 2000. In 2002, he was awarded the Medal of Electrical Engineering from the Association of Chinese Electrical Engineer. He has received  47th Academic Award of Ministry of Education in 2003. He was awarded an honorary Doctor Degree by Kansai University of Japan in 2005.

 

Representative Publications

1. M. W. Tsai, T. H. Chuang, C. Y. Meng, Y. T. Chang and S. C. Lee, 2006, “High performance mid-Infared narrow-band plasmonic thermal emitter”, Appl. Phys. Lett., 89, p. 173116.
2. T. H. Chuang, M. W. Tsai, Y. T. Chang, and S. C. Lee, 2006, “Remotely Coupled Surface Plasmons in a Metal/Insulator/Si Structure Perforated with Periodic Square Hole Arrays”, Appl. Phys. Lett., 89, p. 033120.
3. C. Y. Yang, T. Y. Cho, Y. Y. Chen, C. J. Yang, C. Y. Meng, C. H. Yang, P. C. Yang, C. C. Wu and S. C. Lee, 2007, “Energy-Recycling Pixel for Active-Matrix Organic Light-Emitting Diode Display”, Appl. Phys. Lett., 90, 233512.
4. M. W. Tsai, C. Y. Chen, Y. W. Jiang, Y. H. Ye, H. Y. Chang, T. H. Chuang and S. C. Lee, 2007, “Coupling between surface plasmons via thermal emission of a dielectric layer sandwiched between two metal periodic layers”, Appl. Phys. Lett., 91, Nov. 5.


 

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