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Quantum-Mechanical Prediction of Thermochemical Data: Understanding Chemical Reactivity, cartea 22

Editat de Jerzy Cioslowski
en Limba Engleză Paperback – 31 mar 2002
For the first time in the history of chemical sciences, theoretical predictions have achieved the level of reliability that allows them to - val experimental measurements in accuracy on a routine basis. Only a decade ago, such a statement would be valid only with severe qualifi- tions as high-level quantum-chemical calculations were feasible only for molecules composed of a few atoms. Improvements in both hardware performance and the level of sophistication of electronic structure me- ods have contributed equally to this impressive progress that has taken place only recently. The contemporary chemist interested in predicting thermochemical properties such as the standard enthalpy of formation has at his disposal a wide selection of theoretical approaches, differing in the range of app- cability, computational cost, and the expected accuracy. Ranging from high-level treatments of electron correlation used in conjunction with extrapolative schemes to semiempirical methods, these approaches have well-known advantages and shortcomings that determine their usefulness in studies of particular types of chemical species. The growing number of published computational schemes and their variants, testing sets, and performance statistics often makes it difficult for a scientist not well versed in the language of quantum theory to identify the method most adequate for his research needs.
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Specificații

ISBN-13: 9781402004247
ISBN-10: 1402004249
Pagini: 268
Ilustrații: XVI, 256 p.
Greutate: 0.39 kg
Ediția:2001
Editura: SPRINGER NETHERLANDS
Colecția Springer
Seria Understanding Chemical Reactivity

Locul publicării:Dordrecht, Netherlands

Public țintă

Research

Cuprins

Highly Accurate Ab Initio Computation of Thermochemical Data.- W1 and W2 Theories, and Their Variants: Thermochemistry in the kJ/mol Accuracy Range.- Quantum-Chemical Methods for Accurate Theoretical Thermochemistry.- Complete Basis Set Models for Chemical Reactivity: from the Helium Atom to Enzyme Kinetics.- Application and Testing of Diagonal, Partial Third-Order Electron Propagator Approximations.- Theoretical Thermochemistry of Radicals.- Theoretical Prediction of Bond Dissociation Energies for Transition Metal Compounds and Main Group Complexes with Standard Quantum-Chemical Methods.- Semiempirical Thermochemistry: A Brief Survey.