法國(guó)蒙彼利埃Charles Gerhardt 研究所Michel WONG CHI MAN博士學(xué)術(shù)報(bào)告會(huì)通知

發(fā)布者:系統(tǒng)管理員審核:admin終審:發(fā)布時(shí)間:2009-10-12瀏覽次數(shù):13561

 

應(yīng)浙江加州國(guó)際納米技術(shù)研究院、浙江大學(xué)材料科學(xué)與工程學(xué)系、中國(guó)硅酸鹽學(xué)會(huì)溶膠凝膠分會(huì)邀請(qǐng),法國(guó)蒙彼利埃Charles Gerhardt研究所Michel WONG CHI MAN博士來我校訪問并舉行學(xué)術(shù)報(bào)告。
報(bào)告題目:Bottom-Up Approaches for the Structuring of Silicon-Based Materials
報(bào)告時(shí)間:2009.10.16 下午14:30~16:00
報(bào)告地點(diǎn):華家池校區(qū)納米院四樓會(huì)議室
報(bào)告摘要:
Nonmaterials with sought-after properties are presently in great demand with increasing interest and desire for application. In this field of research, extensive works, mainly based on organosilicon chemistry, have been devoted to the development of new organic-inorganic materials. This presentation will focus on the synthesis and on the characterisation of structured silicon-based materials: sol-gel hybrids and silicon carbide.
1 – Sol-Gel hybrids: Sol-gel process provides an efficient method for preparing hybrid materials with combined organic and inorganic properties which may be exploited in several areas of applications. In this context, bridged silsesquioxanes have developed as a fascinating bottom-up approach for the synthesis of functional hybrid materials with targeted properties. In the past years, increasing efforts have been dedicated to the structuring of these hybrid materials and several shape-controlled bulk hybrid materials (lamellar, tubular and helical) have recently been reported using controlled self-assembly of bis-silylated organic fragments through the H-bonds of incorporated urea groups. We also recently reported a new route to synthesize bridged silsesquioxanes starting from two different organosilyl compounds derived from nucleic bases, e.g. adenine and thymine. The structuring of these materials is obtained thanks to the molecular recognition interactions combined with other weak interactions.
2 – Silicon Carbide (Si-C): Si-C possesses remarkable mechanical and thermal properties and is usually obtained as a dense material. New strategies for obtaining porous Si-C are being developed and templating systems are commonly employed to achieve their structuring. An example using commercial silica spheres will be discussed.
 
Michel WONG CHI MAN博士簡(jiǎn)介:
Michel WONG CHI MAN received his PhD in Chemistry from University Montpellier 2- France in 1987. He started post-doctoral research at (CNRS fellowship) Laboratoire Chimie Organométallique, University Montpellier 2 – France (Dec.1987-Dec.1988) and laboratory "Anorganisch-Chemisches Institut der Universität" University of Heidelberg (Alexander von Humboldt foundation fellowship) – Germany (March1989-Feb.1990). He was promoted to Associate Professor in 1990 and is now Senior CNRS scientist Directeur de Recherche (Institut Charles Gerhardt Montpellier).
Michel WONG CHI MAN has authored 97 papers in peer-reviewed international journals and has 3 patents. He is invited to make 23 invited lectures (plenary and keynotes lectures at international meetings), 35 seminar lectures in universities and industries and 63 oral communications. He is the member of National Committee of the CNRS 2000-2003, French Chemical Society, International Sol-Gel Society and MRS Society and also the member of 3 “International Advisory Board” for international meetings. He is co-chairman of the organizing committee of XIVth ISGC (XIVth International Sol-Gel Conference): Le CORUM – Montpellier – FRANCE (2-7 September 2007).
 
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浙江加州國(guó)際納米技術(shù)研究院
浙江大學(xué)材料科學(xué)與工程學(xué)系
中國(guó)硅酸鹽學(xué)會(huì)溶膠凝膠分會(huì)
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