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Name:
Lingzhi Zhang
Education:
Doctor of Engineering
Positions:
Director of Organic Energy Materials Lab
Academic title:
Professor
Postal Code:
510640
Subject categories:
Energy Materials
Mailing Address:
No.2,Nengyuan Rd,Wushan,Tianhe District,Guangzhou, China
E-mail:
lzzhang@ms.giec.ac.cn

Resume:
Professional Experience

 · Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences  2009.7-present  Professor (Hundred Excellence Program, CAS)

 “High performance organic/polymeric opto-electronic materials and nano-structured materials for energy storage and conversion applications”

· Silatronix Inc. / University of Wisconsin-Madison  2008.2-2009.6  Senior Research Scientist (50%)/Assistant Scientist (50%)

“Synthesis, application, testing, and development of organosilicon electrolytes for Energy Storage Applications; Formulation developments, electrochemical measurements of electrolytes and electrodes for Li ion batteries and supercapacitors”  

 · University of Wisconsin-Madison  2005.6-2008.1

Research Associate (Advisor: Prof. Robert West)

“Si-Based Ionic Liquids/Oligoethylene glycols as Electrolytes for Energy Storage Applications” and “Low Band Gap Silole-Based Conjugated Systems for Opto-Electronic Applications”

 ·  City University of New York      2004-2005

Research Associate (Advisor: Prof. Nan-Loh Yang)

“Nano-Structured Conductive Polymers” and “Photosensitive Copolymers for Biological Applications”

 ·  French National Research and Scientific Center   (CNRS, Rennes, France)   2003-2004

CNRS Research Associate (Advisor: Prof. Régis Réau)

“Synthesis of p-conjugated phospholes and phosphametallecenes for Optoelectronics”

· National Taiwan University, Taipei, TAIWAN    2000-2002

Research Associate (Advisor: Prof. Tien-Yau Luh)

“Conjugated Furan-Based Oligoaryls/Conjugated Polymers for Light Emitting Diodes”

 · Zhongshan (Sun Yat-sen) University, China     1997-2000

Associate Professor (2000)/Lecturer (1997-2000)

“Nonlinear Optical Materials and Photoinduced Birefringence/Fabrication of Microstructures in Functional Polymer Films Using Laser Holography Technology”

 

Direction:
 High performance organic/polymeric opto-electronic materials and nano-structured materials for energy storage and conversion applications
Achievements:
Article:
Community service:
Commitment to research the situation:

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