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onesupeng

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引用回帖:
Originally posted by fegg7502 at 2010-12-07 17:12:38:

现在是在讨论改版的问题,所以,,我开始只是想征集些做量化计算的。
一个版面要有特色,所以,开始没有想扩展很多。。
现在确实人气不行,要改

[ Last edited by fegg7502 on 2010-12-7 at 17:13 ]

貌似我读了半天,主帖没有“量化”(量子化?量子化学?数量化?)这个说明哈。什么是理论计算,也没有你业内的定义阿
长期招收博士生,参见http://fsl-unsw.com
31楼2010-12-07 17:24:33
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fegg7502

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引用回帖:
Originally posted by onesupeng at 2010-12-07 17:24:33:


貌似我读了半天,主帖没有“量化”(量子化?量子化学?数量化?)这个说明哈。什么是理论计算,也没有你业内的定义阿

是呢,,朋友,抱歉,我开贴的时候没有讲清楚,我说的量化是指量子化学了,偶确实知识面很窄。如有什么错误,欢迎指正。
心诚意正,方可始终;身无苦灭,永登光明。
32楼2010-12-07 17:30:26
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liwl926

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小木虫(金币+0.5):给个红包,谢谢回帖交流
fegg7502: 2011-02-07 09:55:15
fegg7502(金币+10): 辛苦了 2011-02-07 09:55:25
Weitao Yang, Ph.D.

Department of Chemistry, Duke University

Research Directions: Density Functional Theory and Linear Scaling Computation  
                           
Electronic structure calculations provide fundamental information of molecular structure and interaction, and the potential energy surfaces necessary for studying molecular dynamics. Description of electrons is necessarily based on quantum mechanics principles. Both conventional ab initio wave function methods and the Kohn-Sham density-functional theory are successful approaches. Because of the nature of quantum particles and the many-body interaction between the electrons, quantum mechanical calculations are most demanding in computational effort. Therefore the accuracy and efficiency of the methods are major concerns.

We believe that density functional theory is the method of choice for large systems. In terms of computational efficiency, DFT calculations, along with the Hartree-Fock (HF) method, are of the lowest cost of first-principle methods. In terms of accuracy, DFT in its current state is already better than HF method in describing chemistry and, because of its rigorous theoretical foundation, potentially it can provide much better accuracy of prediction through the development of energy functionals.

We plan to develop methods for efficient and accurate determination of electronic structure of large molecules based on DFT. Specifically, we plan: (1) to make DFT calculations very efficient by the development of optimal linear scaling approaches based on the newly developed absolute minimum principles with nonorthogonal localized orbitals for the diagonalization problem and the recursive bisection method for the classical Coulomb interaction of electrons, and (2) to enhance the accuracy of DFT by the construction of new and improved density functionals for electron exchange and correlation based on the adiabatic connection, and the formulation of functionals from wave function approach with localized orbitals.

Our development aims at linear scaling DFT computational methods, which are optimal and robust, and exchange-correlation functionals in terms of localized orbitals, which are accurate, open for systematic improvement, and feasible for calculations within the linear scaling computational formalism. We emphasize the use of localized molecular orbitals in our approaches, because we believe that localized orbitals provide not only computational efficiency for linear scaling algorithms, but also physical insight and local and hence more economical approach to electron correlation. Our research will build on the current development in the field and should contribute to the progress of theoretical and computational chemistry in becoming an equal partner with other more traditional fields of chemistry.



Research Directions: Quantum Mechanical Studies of Biological Systems

We plan to extend and apply our linear-scaling semiempirical methods to study mechanism of enzyme reaction systems. Our continuing collaboration with biochemists and biophysicists at the University of North Carolina-Chapel Hill is essential to this effort.

We are also developing novel methods to describe the active site of enzymes with quantum mechanics and the rest of the enzyme with empirical molecular mechanics. Our development will be focused on the optimal modeling of the boundary between the quantum mechanical part and the molecular mechanics part. The proposed method will be applied to study the catalytic reaction mechanisms. This will lead to accurate and efficient methods of molecular modeling for enzyme and proteins. It will foster our understanding of biological catalytic processes at the molecular level, and facilitate the design of drugs and inhibitors.



HOME PAGE:
http://www.chem.duke.edu/~yang/index.htm
33楼2011-02-06 22:06:13
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liwl926

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Randall Q. Snurr, Ph.D.
Professor of Chemical and Biological Engineering, Northwestern University
Senior Editor, The Journal of Physical Chemistry

Research
Development of nanoporous materials to solve environmental and energy problems, diffusion in nanoporous materials, adsorption thermodynamics, development of new adsorbents and catalysts, separations, catalysis, statistical thermodynamics, molecular modeling.

HOME PAGE: http://zeolites.cqe.northwestern.edu/
34楼2011-02-07 16:36:13
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liwl926

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帅志刚 教授、博士生导师

清华大学化学系

主要获奖与荣誉:


2004 中国科学院百人计划结题评估“优秀”(前20%)

2004 国家杰出青年科学基金

2006 国家人事部等7部委“新世纪百千万人才国家级人选”

2008 当选为国际量子分子科学院院士
http://www.iaqms.org/members/shuai.php

2009年当选为英国皇家化学会会士(Fellow)

2008年入选教育部长江学者特聘教授

“Theoretical Chemistry Accounts” (Springer), Member of the Advisory Board (2010 --)

“Frontiers of Chemistry in China” (高教出版社),副主编 (2009 -- )

《中国科学:化学》(中科院),编委 (2008 -- )

“Journal of Theoretical & Computational Chemistry”, (World Scientific), Advisory Editor (2007 -- )

《物理化学学报》(中国化学会、北京大学),编委 (2009 -- )

《分子科学学报》(中国化学会、东北师大),编委 (2006 -- )


中国化学会副秘书长、理事、国际事务工作委员会主任 (2006-2010)

中国化学会理论化学专业委员会副主任 (2006 – 2010)

中国化学会有机固体专业委员会委员 (2002 – 2006, 2006 – 2010)

主要研究领域


理论化学、有机功能材料理论计算与模拟


主页: http://chem.tsinghua.edu.cn/info/szdw_info.php?infoid=778
35楼2011-02-07 17:40:02
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liwl926

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Alexander Dalgarno

Phillips Professor of Astronomy, Harvard University, Cambridge, Massachusetts, USA.

Fellow of the Royal Society (1972). Member of the Royal Irish Academy (1989). Member of the American Academy of Arts and Sciences (1968). International Academy of Quantum Molecular Science Annual Prize (1969). Hodgkins Gold Medal of the Smithsonian Institution (1977). Davisson-Germer Award of the American Physical Society (1980). William F. Meggers Award of the Optical Society of America (1986). Gold Medal of the Royal Astronomical Society (1986). Spiers Memorial Medal of the Royal Society of Chemistry (1992). Fleming Award of the American Geophysical Union (1995).

Author of:
Over 500 papers on atomic and molecular physics, quantum chemistry, atmospheric physics and chemistry, astrophysics.
Important Contributions:
Perturbation theory : the interchange theorem : sum rules : coupled and time-dependent Hartree-Fock theory : the relativistic random phase approximation : variational representations of Green's functions : long-range forces.
Scattering theory : space fixed frame formulation of rotational excitation : adiabatic and diabatic theories : predissociation as a collision process : ultracold collisions.
Atmospheric Physics and Chemistry : electron temperature profiles : airglow and auroral processes : hot atom chemistry.
Astrophysics : interstellar chemistry : ultraviolet pumping of molecular hydrogen and shocks : intense field effects : charge transfer in plasmas : chemistry of the early Universe.

HOME PAGE:
http://www.cfa.harvard.edu/ast/homepages/dalgarno.html
36楼2011-02-07 17:47:06
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liwl926

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Michele Parrinello

Chair in Computational Science, Laboratory of Physical Chemistry - ETH Zurich, Switzerland.

European Physical Society: Hewlett-Packard Europhysics Prize (1990), Fellow, American Physical Society (1991), Socio correspondente, Accademia dei Pericolanti (1992), Eli Burstein Lecturer in Materials Science at the University of Philadelphia (1993), Royal Society of Chemistry: Boys-Rahman Prize (1994), American Physical Society: Rahman Prize (1995), University of Stuttgart: Honorary Professor (1995), Honorary Member, Materials Research Society of India (1999), American Chemical Society: Award in Theoretical Chemistry (2001).

Author of:
More than 300 research papers, review articles and edited books.
Important Contributions:
Theory of ionic liquids; Molecular dynamics simulation of structural phase transitions; Path integral study of metal-molten salts solution; Development of the ab initio molecular dynamics method; Proton transfer in water; Ziegler-Natta catalysis.

HOME PAGE:
http://www.rgp.ethz.ch/
37楼2011-02-07 17:50:42
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liwl926

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fegg7502(金币+15): 辛苦了 2011-02-07 19:10:16
Reinhart Ahlrichs

Professor of Theoretical Chemistry, University of Karlsruhe, Germany.

Member of the Akademie Heidelberg (1991–); Editorial Board of “Physical Chemistry Chemical Physics” (1999–).

Important Contributions:
Mathematical properties of Schrödinger operators, behavior of exact wave functions, structure of intermolecular interactions.
Development and application of methods for molecular electronic structure calculations. Work on the problem of electron correlation culminated in Coupled Pair Functional (CPF) methods. The TURBOMOLE suite of programs, developed in the research group, allows for the ab initio treatment of properties of larger molecules on workstations, e.g. structure, energetics, NMR chemical shifts, dynamic properties.
Applications to molecules with more than 100 atoms—of all kinds—are mainly carried out in connection with experiments to check, correct and to predict properties of molecules and their existence.

http://www.iaqms.org/members/ahlrichs.php
38楼2011-02-07 17:57:00
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fds329

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鱼大婶

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帖子真精彩!
已经收录到淘贴专辑《热门前沿研究
39楼2011-09-01 22:56:07
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tfl03

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Is This a Chemical Bond? A Theoretical Study of Ng2@C60
此处回帖者,声名水上流。
40楼2012-06-14 20:45:50
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