from    
to    
search  

 


Symmetry restoration and quantum Mpemba effects in chaotic andlocalization sy...
Quantum Gases 2024
Stories of Fermions in an Optical Box
Contractive Unitary and Classical Shadow Tomography
报告题目:
Catalyst design and in situ characterization for green sustainable processes
 报告人:
Yasuhiro Iwasawa
Prof. Dr. 
Department of Chemistry, Graduate School of Science,
The University of Tokyo
Senior Vice-President: The Chemical Society of Japan
Chairman of the Chemistry Committee at Science Council of Japan
e-mail: iwasawa@chem.s.u-tokyo.ac.jp
http://www.chem.s.u-tokyo.ac.jp/~yiwswlab/INDEX.htm
报告时间:
2008-09-04 15:30
报告地点:
理学院报告厅
主办单位:
清华大学化学系
  简介:

Abstract

Molecular-level control of catalyst surfaces is necessary for design of multi-functionalized catalytic sites and ensembles. The new and distinct materials and chemistry prepared stepwise in a controllable manner by using organometallic and inorganic complexes as precursors provide an opportunity for the development of efficient catalytic molecularly-organized surfaces. The key factors of chemical design of supported catalyst surfaces are composition, structure, oxidation state, distribution, morphology, polarity, etc. which should be organized at the surface. In the development of novel catalysts, new chemical concepts and strategies regarding composition or structure are conceived. New strategy and concept lead to tailor-made catalyst design for target reactions in green sustainable processes, where in situ characterizations are inevitably important for understanding of the origin and mechanism of the tremendous catalysis by the designed surfaces and for development of a new class of efficient catalysts. These key issues may also be derived from single crystal surfaces by surface analysis techniques and also from theoretical calculations.

 

The talk focuses on several recent topics of novel catalyst design and new catalysis mechanism on oxide surfaces for selective catalysis such as epoxidation, selective oxidation, asymmetric catalysis, shape-selective catalysis, acid-base catalysis, environmental catalysis, etc.

今日相关信息
Organic Materials for Emerging Electr...
 
同类别相关信息
Pyroptosis & Innate Immunity: M...
人工智能拓展火灾安全研究的进展
端牢中国饭碗和食品加工
分子的高压化学反应
清华2024高分子前沿讲座:聚乙烯催化剂...
学术活动