Advanced Structural Chemistry - Rong Cao
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Présentation Advanced Structural Chemistry de Rong Cao Format Relié
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Résumé :
Diese einzigartige Publikation besch?ftigt sich mit der Beziehung zwischen Struktur und Funktion von Stoffen, wirkungsvollen und pr?zisen Synthesemethoden und theoretischen Werkzeugen f?r neue Funktionscluster und por?se Materialien.
Biographie:
Professor Rong Cao is Director of Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences (FJIRSM, CAS) and Director of Institute of Urban Environment, CAS. He received his B.S. degree in Chemical Physics from the University of Science and Technology of China, Ph.D. in Chemical Physics from FJIRSM CAS and a recipient of the Research Assistant at Hongkong Polytechnic University and the JSPS Postdoctoral Fellowship Program for Foreign Researchers at Nagoya University. Since 2002, he became a full professor and PI at FJIRSM, CAS. He has received numerous scientific awards, including the second Prize in China's State Natural Science Award (2002, the third author), the first Prize in Natural Sciences of Chinese Academy of Sciences (2001, the third author); the Second Prize in Natural Sciences of Chinese Academy of Sciences (2000, the second author); the first Prize in Natural Sciences of Fujian province; National Science Fund of Distinguished Young Scholars (2003); Special allowances experts of the State Council (2004); National Candidate of New Century Talents Project (2006); China Youth Science and Technology Award (2006) and so on.
Sommaire:
VOLUME 1 1. INTRODUCTION 2. COORDINATION-ASSEMBLED METAL-ORGANIC MACROCYCLES AND CAGES 3. STRUCTURAL CHEMISTRY OF METAL-OXO CLUSTERS 4. SYNTHETIC APPROACHES, STRUCTURAL DIVERSITIES, AND BIOLOGICAL ASPECTS OF MOLYBDENUM (TUNGSTEN)-BASED HETEROMETALLIC SULFIDE CLUSTERS AND COORDINATION POLYMERS 5. GROUP 11-15 METAL CHALCOGENIDES VOLUME 2 6. THE STRUCTURES OF METAL?ORGANIC FRAMEWORKS 7. STRUCTURAL DESIGN AND RATIONAL SYNTHESIS 8. STRUCTURAL TOPOLOGIES AND INTERPENETRATION IN THE COORDINATION POLYMERS 9. INORGANIC CHALCOGENIDES: FROM ZERO-DIMENSIONAL CLUSTERS TO THREE-DIMENSIONAL FRAMEWORKS 10. RELATIONSHIP BETWEEN STRUCTURE AND ELECTROLUMINESCENT, PHOTOCHROMIC, OR SECOND-ORDER NONLINEAR OPTICAL PROPERTY 11. RELATIONSHIP BETWEEN STRUCTURE AND FERROELECTRIC PROPERTIES VOLUME 3 12. THE RELATIONSHIP BETWEEN STRUCTURE AND ELECTRIC PROPERTY Introduction Structure and Electrical Properties of Inorganic Conductive Materials Structure and Electrical Properties of Organic Conductive Materials Structure and Electrical Properties of Organic-Inorganic Hybrid Conductive Materials 13. UNDERSTANDING MAGNETO-STRUCTURAL CORRELATIONS TOWARD DESIGN OF MOLECULAR MAGNETS Magneto-Structural Correlations in Spin-Crossover Compounds Magneto-Structural Correlations of Low-Dimensional Magnets Influence of Ligand Bridging Modes on the Mediated Magnetic Coupling Geometrically Frustrated Molecular Magnetic Materials 14. RELATIONSHIP BETWEEN MOF STRUCTURES AND GAS ABSORPTION PROPERTIES Introduction Basic Conceptions About Gas Absorption The Correlation Between Physical Adsorption Isotherms and MOFs Structures Effect of Material Defects on Gas Adsorption Representative MOFs with Ultrahigh Surface Area and the Factors Effecting on Surface Area Adsorption Enthalpy of MOF Materials 15. RELATIONSHIP BETWEEN STRUCTURE AND SEPARATION PROPERTY CO2 Capture and Separation Separation of Hydrocarbons Separation of Noble Gases Separation of Hydrogen Isotopes Enantioselective Separation 16. CATALYSIS IN METAL-ORGANIC FRAMEWORKS: RELATIONSHIP BETWEEN ACTIVITIES AND STRUCTURES Catalysis by Metal Nodes Catalysis by Functionalized Linkers Catalysis by Species in Pores Asymmetric Catalysis in MOFs Photocatalysis in MOFs Multi-Component Catalysis Using MOFs
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