凯发

Speaker-Jui-Ming Yeh

Jui-Ming Yeh
Chung Yuan Christian University, Taiwan, China

Education:
1984.9-1988.6     B.S.     Fu Jen Catholic University.
1988.9-1990.6     M.S.    Fu Jen Catholic University. 
1992.9-1996.6     Ph.D.   Drexel University, Philadelphia, Pennsylvania, USA.
Professional Appointments:
1996.11-1998.7    Researcher, Industrial Technology and Research Institute
1998. 8-2002.7     Assistant Professor, Chemistry Department, Chung Yuan Christian University
2002.8-2005.7      Associate Professor, Chemistry Department, Chung Yuan Christian University
2005.8-Present     Professor, Chemistry Department, Chung Yuan Christian University
2012.8-present     Distinguished Professor, Chung Yuan Christian University
Research Interests
Advanced graphene-based polymer anticorrosion coatings.
Preparation, characterization and applications of polymer nanocomposites.
Preparation, characterization and applications of bio-mimetic Materials.
Preparation, characterization and applications of electroactive and photoactive polymers.
Preparation, characterization and in-vitro/in vivo studies of scaffold.
Awards and Honors
Distinguished Professor, Chung Yuan Christian University, (2012/8 – present).
Outstanding Research Award, Chung Yuan Christian University (2012 ) 
Outstanding Teaching Award, Chung Yuan Christian University (2005 and 2012) 
Selected Recent Publications: 
1.Chang, C.H.; Huang, T. C.; Peng, C. W.; Weng C.J.; Yeh, J. M.  Carbon  50, 5044 (2012) .
2.Chang, K.-C.; Hsu, M. H.; Lu, H. I.; Lai, M. C.;  Li, S. Y.; Chuang, T. Li.; Wei, Y.; Yeh, J. M.*; Liu, W. R.  “Room-temperatture cured hydrophobic epoxy/graphene composites as corrosion inhibitor for cold-rolled steel”, Carbon  66, 144 (2014)   

Title:Graphene-based polymer for anticorrosive coating
SymposiumB17 Anti-corrosion coatings
Starting Time
Ending Time
Abstract

In this work, the polymer coatings imbedded with well-dispersed paletes were found to effectively enhance the gas (e.g., oxygen) barrier property of near polymer membrane, resulting in the corrosion protection of corresponding coating application upon metallic substrates.The anticorrosion performance of graphene-base polymer coatings was investigated by electrochemical corrosion measurements of corrosion potential, polarization resistance, corrosion current and corrosion rate in saline conditions.  It should be noted that the anticorrosion performance of graphene-based polymer coatings was found to effectively promote as compared to that of corresponding neat polymer coatings.  

Main Organizer

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E-mail: meeting@c-gia.org

Abstract: Minyang Lu

Sponsor: Wenyang Yang

Media: Liping Wang

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