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FF:Chueh Yu-Lun

published: 2016-12-27 14:46:38       hits: 

name : Chueh Yu-Lun Sex: Male phone: 13258129107
email: office-address: Communication Building 708(Shahe Campus)
PH.D  Supervisor: Yes Master Supervisor: Yes
major: Ph.D:Electronic Science and Technology
research interst: Nanoelectronics,  Information Materials and Components, Information Materials and Components
Biography: Prof. Chueh has published 211 papers on various well-known journals relating to the Physics Materials and Nanotechnology. And the high factor is up to 36 and the total citiation are more than 6000 times. During his working in the National Hsing-Hua University 6 years, he had published 146 essays, including 63 corresponding author and 83 cop-author. He also applied for 19 Taiwan and American patents.10 patents of which had released.
Education experience: 1.Professor, Materials Science & Technology Department,National Tsing Hua University,2015-now
2.Postdoctoral researcher, Electrical Engineering & Computer Sciences, University of California, Berkeley, 2008-2009
3.Postdoctoral researcher, Materials Science and Engineering, National Tsing Hua University, 2007-2008
4.Ph.D., Materials Science and Engineering, National Tsing Hua University, 2001-2006
5.M.S., Materials Science and Engineering, National Tsing Hua University, 1999-2001
6.B.S., Physics, National Sun Yat-Sen University, 1995-1999
Selected Publications: 1.Tunable Endothermic Plateau for Enhancing Thermal Energy Storage Obtained Using Binary Metal Alloy Particles -Nano Energy
2.Transfer-free Growth of Atomically Thin Transition Metal Disulfides using a Solution Precursor by a Laser Irradiation Process and their Application in Low-power Photodetectors-Nano Letters
3.Ultrafast and Low Temperature Synthesis of Highly Crystalline and Patternable Few-Layers Tungsten Diselenide by Laser Irradiation Assisted-Selenization Process-ACS NANO
4.Large-Scale Micro- and Nano-patterns of Cu(In, Ga)Se2 Thin Film Solar Cells by Mold-Assisted Chemical Etching Proces-ACS NANO
5.Toward Omnidirectional Light Absorption by Plasmonics Effect for High Efficiency Flexible Non-Vacuum Cu(In,Ga)Se2 Thin Film Solar Cell-ACS NANO