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[ Last edited by cenwanglai on 2011-10-17 at 07:15 ] |
第一性原理 | 熱門前沿研究 | @個人收集@ | 科研與論文 |
核-殼(蛋殼)催化劑 | 計算模擬軟件教程等 | 留學(xué) | Abinit 相關(guān)資料 |
光譜 | 量化計算 | 理論相關(guān) | 動力學(xué)模擬 |

木蟲 (著名寫手)
葉落鷹飛
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馬琰銘教授 http://nlshm-lab.jlu.edu.cn/YanmingMa/mym.htm 工作科研經(jīng)歷: 2001.9—2004.11 吉林大學(xué)超硬材料國家重點實驗室 副教授 2002.4—2004.6 加拿大國家科學(xué)院Steacie分子科學(xué)研究所 博士后研究 2004.12— 至今 吉林大學(xué)超硬材料國家重點實驗室 教授 2005.9 —至今 吉林大學(xué)超硬材料國家重點實驗室 博士生導(dǎo)師 2006.7—2008.4 瑞士蘇黎世高等工學(xué)院 訪問教授 2009.11—2009.12 日本理化學(xué)研究所(RIKEN) JSPS訪問教授 獲得榮譽: 2001年 獲國際高壓科學(xué)與技術(shù)協(xié)會授予的“高壓科學(xué)杰出青年學(xué)者獎—Jamieson Award” 此獎項兩年頒發(fā)一次,每項僅授予一人。這是我國學(xué)者首次獲得此獎項。 2006年 教育部新世紀優(yōu)秀人才支持計劃 吉林省杰出青年科學(xué)研究計劃 2008年 長春市第七批優(yōu)秀青年大學(xué)畢業(yè)生 2009年 吉林大學(xué)十大杰出青年 吉林大學(xué)-中國宋慶齡基金會博宥基金優(yōu)秀成果獎 第十屆吉林省青年科技獎 長春市優(yōu)秀歸國人員 Daniel Tsui (Nobel Laureate) Fellowship 研究成果“發(fā)現(xiàn)金屬鈉在高壓條件下可轉(zhuǎn)化為透明絕緣體” 入選2009年中國基礎(chǔ)研究十大新聞 被聘為 Physical Review Letters,Physical Review B,New Journal of Physics, Journal of Physical Chemistry,Materials Research Bulletin,Journal of Applied Physics,Computational Materials Science,Journal of Physics A,Journal of Physics D,Journal of Physics: Condensed matter,Solid State Communication等二十余種刊物的審稿人。 Yanming Ma*, Mikhail Eremets, Artem R. Oganov, Yu Xie, Ivan Trojan, Sergey Medvedev, Andriy O. Lyakhov, Mario Valle and Vitali Prakapenka,“Transparent dense sodium”, Nature 458, 182 (2009). See also Nature News & Views,“Condensed-matter physics: Pressure for change in metals”, Nature 458, 158 (2009). Highlighted by Nature Photonics 3, 250, (2009), Chemistry World, Chemical& Engineering News, and so on. |

金蟲 (職業(yè)作家)
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其實何必呢?扣了也就算了,過了快半年又補5分,既不承認我做錯了,也不承認我做對了。 實際上發(fā)現(xiàn)這個版之所以如此冷清,源于部分人知識面窄的可憐,計算包含的面相當(dāng)廣,除了一部分人認為是計算全部的“從頭算”以及分子動力學(xué)等,還有多不勝數(shù)的微觀粒子、介觀離子以及宏觀連續(xù)介質(zhì)的數(shù)值方法,很多時候各種方法也互為補充而已。 從頭算最精細,信息量最大,但是我認為是最沒有技術(shù)含量的算法,玩幾個原子還好,耗時長。其他諸如第一原理分子動力學(xué),TBM,QM/MM,MD,MC以及連續(xù)介質(zhì)的FDM,F(xiàn)EM,無網(wǎng)格等,一大串,用個本子光寫名字都寫一大串。每種方法都有個適用范圍。粒子方法最為簡單,版本也最少。連續(xù)介質(zhì)的發(fā)展最為成熟,雖然也有很多問題,但是各種版本大大小小也就幾百上千種。唉! |

榮譽版主 (知名作家)
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1,課題組以及課題組組長的名字職稱以及所在國家 Prof. Dr. Haijun Jiao, 中國科學(xué)院山西煤化所,China 1985年畢業(yè)于山西師范大學(xué)化學(xué)系化學(xué)專業(yè),獲理學(xué)學(xué)士學(xué)位。畢業(yè)后留校工作,1987年赴德國Erlangen-Nürnberg大學(xué)留學(xué),1992 年獲得有機化學(xué)理學(xué)碩士學(xué)位 (Diplom),1995年獲得理學(xué)博士學(xué)位 (Dr. rer. nat.)。畢業(yè)后在該所工作至2000年,隨后赴法國Rennes國家科學(xué)研究中心(CNRS)固體材料研究所進行合作研究,2001年返回德國 Erlangen-Nürnberg大學(xué)有機化學(xué)研究所工作,2002年起在德國Rostock有機催化研究所工作。2002年底入選中科院“引進國外杰出人才”計劃后到山西煤化所工作。 長期從事有機化學(xué),無機化學(xué),物理化學(xué),金屬有機化學(xué)以及材料科學(xué)等領(lǐng)域的研究工作。應(yīng)用量子化學(xué)方法,在反應(yīng)機理、芳香性、過渡金屬配合物、均相催化和非均相催化研究與新型材料設(shè)計方面有相當(dāng)?shù)姆e累,并與實驗研究的最新結(jié)果密切結(jié)合,取得了一系列很有價值的研究成果。提出了判斷芳香性新的磁性標準:核獨立化學(xué)位移(NICS),在有機化學(xué)界產(chǎn)生了巨大的反響。目前,核獨立化學(xué)位移(NICS)作為一個簡單、有效的標準而廣泛用于芳香性的研究。在煤的間接液化過程中,對諸如費托合成、加氫脫硫脫氮、氫化反應(yīng)及氫甲;磻(yīng)等重要催化過程進行了詳細的機理研究。 2,課題組網(wǎng)址 http://sourcedb.cas.cn/sourcedb_ ... 090704_1930402.html 3,研究領(lǐng)域 采用量子化學(xué)方法研究過渡金屬化合物的結(jié)構(gòu)與反應(yīng)性、催化反應(yīng)機理及催化新材料的分子設(shè)計等。內(nèi)容涉及: (1) 催化劑的表面結(jié)構(gòu)與反應(yīng)性; (2) 催化反應(yīng)機理; (3) 催化劑表面結(jié)構(gòu)的調(diào)控; (4) 催化劑的分子設(shè)計。 4,代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) 近年來,在J. Am. Chem. Soc.、Angew. Chem. Int. Ed.、J. Catal.、Chem. Eur. J.、J. Phys. Chem.、Organometallic 等國際著名刊物發(fā)表論文200多篇,論文累計被引用次數(shù)達7100次。 5,組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好等) vasp, gaussian, dmol3, castep, et al.組內(nèi)計算硬件資源很強大。。 |

榮譽版主 (知名作家)
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1,課題組以及課題組組長的名字職稱以及所獲得獎項和所在國家 Roald Hoffmann, USA Awards: • Nobel Prize, 1981 (chemistry) • American Chemical Society: Priestley Medal; Arthur C. Cope Award in Organic Chemistry; Inorganic Chemistry Award; Pimentel Award in Chemical Education; Award in Pure Chemistry • Monsanto Award • National Medal of Science • National Academy of Sciences • American Academy of Arts and Sciences Fellow • American Philosophical Society Fellow • Foreign Member, Royal Society 2,課題組網(wǎng)址 http://www.chem.cornell.edu/faculty/index.asp?fac=32 3,研究領(lǐng)域 Research Description: Our group looks at the electronic structure of molecules of any complexity, whether organic or inorganic, discrete molecular structures, or extended arrays in one, two, or three dimensions. We are interested in why they have the structures they do, how they might react, and whether they are stable or good conductors. The answers lie in the electronic structure of the molecules. Thus we do molecular orbital calculations, often very simple ones, seeking orbital explanations and relationships between the molecule at hand and any related systems. The following study illustrates our approach: In a February 1995 issue of Angewandte Chemie, W. S. Sheldrick and M. Wachhold published a paper on the synthesis and structure of Cs3Te22. The beautiful structure of this molecule (fig. 1) displays unusual features. Discrete crown Te8 entities (well known for sulfur and selenium, they had not been previously observed for tellurium) can be easily identified, as can infinite two-dimensional sheets that are formed by Te atoms and include one Cs atom per six telluriums. If one assumes the Te8 rings to be neutral molecular entities and assigns the valence electrons of cesium fully to the only atoms left, the tellurium sheets, the compound may be described as [Cs+]3[Te8]2[Te63-]. The Te63- net is definitely rich in electrons. The pattern of the CsTe6 sheet (fig. 2), looking down the c-axis onto the sheet; the darker and larger spheres are Cs, the light ones (Te) is remarkable. This is a net of rare symmetry containing only fourfold and twofold rotation axes. In this net, the Te atoms are bonded in unusual ways. One sees three coordinate T-shaped Te atoms (as in BrF3) and linear two-coordinate Te (as in I3- or XeF2, not as in TeR2). All these features-the unusual coordination geometries, the electron richness of the net, the net itself-were explained by postdoctoral fellow Norman Goldberg and graduate student Qiang Liu. They calculated the electronic structure of the material and figured out the bonding in a qualitative way, relating it to molecular models. We predict conductivity for the net and the existence of CsTe7 and Cs2Te15. CsTe7 has just been synthesized. 4,代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) Hypervalent Bonding in One, Two and Three Dimensions: Extending the Zintl-Klemm Concept to Nonclassical Electron-Rich Networks. Garegin Papoian and Roald Hoffmann, Angew. Chem. 39, 2408-2448 (2000). A comparative theoretical study of the hydrogen, methyl and ethyl chemisorption on the Pt(111) surface. G. Papoian, J. Nørskov, and R. Hoffmann, J.Am.Chem.Soc. 122(17), 4129-4144 (2000). Real and Hypothetical Intermediate-Valence Fluoride Ag2+/Ag3+ and Ag2+/Ag1+ Systems as Potential Superconductors. W. Grochala & R. Hoffmann, Angew. Chem., 40(15), 2742-2781 (2001). Deformation and Bonding in a Puckered Re-C Square Net. E. Merschrod, A. Courtney & R. Hoffmann, Zeitschrift f. anorg. allgem. Chemie 628(12), 2757-2763 (2002). Sigmatropic Shiftamers: Fluxionality in Broken Ladderane Polymers. D. Tantillo & R. Hoffmann, Angew. Chem. Int. Ed., 41(6), 1033-1036, (2002). 5,組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好,等) |

榮譽版主 (知名作家)
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1,課題組以及課題組組長的名字職稱以及所在國家 Prof. Dr. Walter Thiel, Max-Planck-Institut für Kohlenforschung,Kaiser-Wilhelm-Platz 1。。。。。德國 b. 1949 in Treysa; 1966-1971 chemistry studies at Universität Marburg; 1973 Ph.D. Universität Marburg (A. Schweig); 1973-1975 Post-Doc University of Texas at Austin (M.J.S. Dewar); 1981 Habilitation Universität Marburg; 1983-1992 Associate Professor of Theoretical Chemistry Universität Wuppertal; 1987 Guest Professor University of California at Berkeley; 1992-1999 Full Professor of Chemistry Universität Zürich; since 1999 Director at the Max-Planck-Institut für Kohlenforschung; since 2001 Honorary Professor Universität Düsseldorf. 1975 Liebig Fellowship of the Verband der Chemischen Industrie; 1982 Heisenberg Fellowship of the Deutsche Forschungsgemeinschaft; 1988 Förderpreis of the Alfried-Krupp Stiftung; 2002 WATOC Schrödinger Medal; 2007 Member of Deutsche Akademie der Naturforscher Leopoldina; 2007 Member of International Academy of Quantum Molecular Sciences. 2,課題組網(wǎng)址 http://www.mpi-muelheim.mpg.de/k ... nglish/thiel_e.html 3,研究領(lǐng)域 Our central field of research is Theoretical and Computational Chemistry, in particular Quantum Chemistry. We focus on theoretical developments that extend the scope of computational methodology, especially for large molecules, and we apply theoretical methods to study specific chemical problems, mostly in close cooperation with experimental partners. The activities of the group cover a broad methodological spectrum: ab initio methods density functional theory semiempirical methods combined quantum mechanical/molecular mechanical methods The applications range from accurate calculations on small molecules to the approximate modeling of very complex systems with thousands of atoms. Recent examples adress the vibration-rotation spectroscopy of small reactive species, catalytic reactions of transition metal compounds, properties of electronically excited states, and enzymatic reactions. 4,代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) http://www.mpi-muelheim.mpg.de/k ... publications_e.html 5,組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好等) Theoretical chemistry, computational chemistry, quantum chemistry; ab initio methods, density functional theory, semiempirical methods, combined QM/MM methods. this is really an international group |

榮譽版主 (知名作家)
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所在的組: 1. 課題組以及課題組組長的名字職稱以及所在國家 Assistant Professor Zhao Yang, Division of Materials Science, School of Materials Science and Engineering, Nanyang Technological University, Singapore. 新加坡 2. 課題組網(wǎng)址 http://www3.ntu.edu.sg/home/zhaoyang/index.html 3. 研究領(lǐng)域 Current Research Interests Miniaturization of electronic and mechanical devices over the past century has brought immeasurable impact onto human lives. Commercial microelectromechanical systems have reached micron scales, and bona fide molecular apparatuses began to emerge setting the stage for upcoming integrated nanoelectromechanics. Dr. Zhao and coworkers systematically investigate carbon-nanotube-based oscillators, bearings and rotators via molecular dynamics simulation in order to establish their optimal operating conditions and to facilitate function-oriented designs. In addition, particular attention is paid to utilization of nanomachinery devices as nanolabs to study energy exchanges among various degrees of freedom, ergodicity on energy surfaces, and equipartition as systems relax, and to test fundamental hypotheses of thermodynamics and statistical mechanics. The advent of ultrafast femtosecond laser spectroscopy brings about intense research interest in relaxation dynamics of photo-excited states in liquids and solids. Newly-arrived technological capabilities to control femtosecond pulse durations and down-to-one-hertz bandwidth resolutions provide novel probes on vibrational dynamics and excitation relaxation. Dr. Zhao and coworkers formulate time-dependent polaronic wave functions that facilitate microscopic modelling of photo-generated excitation relaxation and realistic computation of various third-order optical response functions, and help to achieve a satisfactory comparison between theory and experiment. Carbon nanotubes are attractive candidates for a variety of applications thanks to their remarkable physical, chemical, and mechanical properties. Optical absorption and fluorescence spectroscopy measurements have become an important tool for structure-based characterization and DNA-assisted manipulation of carbon nanotubes. Dr. Zhao and coworkers establish visual, intuitive connections between optical absorption line shapes and their underlying nanotube structures, which are scrutinized by more sophisticated semi-empirical and DFT calculations. 4. 代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) http://www3.ntu.edu.sg/home/zhaoyang/Publications.html 5. 組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好等) 課題組人數(shù)不多,老板剛進入NTU沒多長時間, 主要使用軟件是Fortran,自己編程,比較感興趣的是極化子動力學(xué)以及超快光譜, 極化子輸運, 能量轉(zhuǎn)移, 光能捕獲, 量子信息, 納米機械等, 傾向于開發(fā)新的物理模型并且應(yīng)用這些模型對實驗進行解析和指導(dǎo), 并且盡量減少用商業(yè)量化軟件的使用。具體人員組成在主頁上有。 |

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1,課題組以及課題組組長的名字職稱以及所在國家 Ben Zhong Tang, Ph.D. Chair Professor of Chemistry,中國-香港 2,課題組網(wǎng)址 http://tangbenzhong.polymer.cn/ 3,研究領(lǐng)域 Polymer Chemistry and Materials Science Exploration of new catalyst systems, development of new polymerization reactions, synthesis of new functional materials, discovery of new natural phenomena, and creation of new scientific knowledge 4,代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) 見http://home.ust.hk/~tangbenz/ 5,組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好等) 見http://home.ust.hk/~tangbenz/ |

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1,課題組以及課題組組長的名字職稱以及所在國家 Computational Bio- and Nano-technology, Prof. Sean Smith, Australia 2,課題組網(wǎng)址 http://web.aibn.uq.edu.au/cbn/index.htm 3,研究領(lǐng)域 Research areas that have taken particular focus within the group in recent years include nanocomposite materials for mobile hydrogen storage applications; nanoparticles and biological dendrimers for gene delivery applications; fluorescent proteins for cellular imaging; and fundamental quantum dynamical methodology development for application in combustion and atmospheric chemistry as well as condensed phase applications such as hydrogen transport in materials and proton chain transfer in biological systems. 4,代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) http://web.aibn.uq.edu.au/cbn/Publication/publications_static.htm 5,組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好等) 硬件:http://web.aibn.uq.edu.au/cbn/research_high_perform.htm 軟件:http://web.aibn.uq.edu.au/groups/smith_group/index.php/User_Guide 人員組成:請參照課題組網(wǎng)址 |

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1.課題組以及課題組組長的名字職稱以及所在國家 UCI Electronic Structure Group. Prof. Kieron Burke, USA 2,課題組網(wǎng)址 http://chem.ps.uci.edu/~kieron/dft/ 3, 研究領(lǐng)域 We are a useless bunch of theoretical chemists and physicists devoted to applying Density Functional Theory(DFT) whenever we see more than one particle, i.e. pretty much every aspect of the universe. Guided(=abused, cajoled, bribed) by Prof. Kieron Burke at UCI, our current research interests include: * Intense laser fields * Semiclassical treatment of electrons * Transport through single molecules * Scattering theory * Resonances * Atoms in molecules etc., with applications in * Quantum chemistry * Nanoscience * Attosecond science * Condensed-matter physics * Atomic physics 4,代表作,發(fā)表論文數(shù)量以及總被引用次數(shù) [1] Time-dependent density functional theory, edited by M. Marques, C.A. Ullrich, F. Noguiera, A. Rubio, K. Burke, and E.K.U. Gross (Springer, Heidelberg, 2006). [2] Special Issue of J. Chem. Theory Comput. in Honor of John P. Perdew for His 65th Birthday J. Chem. Theory Comput., 5, 675(2009) 5,組內(nèi)概況(包括組內(nèi)使用軟件以及硬件情況,人員組成,以及課題組長愛好等) http://chem.ps.uci.edu/~kieron/dft/ |

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