Describes the progress made over the decades by researchers in theoretical methodologies. This volume is divided into various sections covering different areas such as theoretical developments and their applications to biological systems, nanomaterials, nanotechnology, and structure-activity correlation.
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Practical Aspects of Computational Chemistry II: An Overview of the Last Two Decades and Current Trends gathers the discussion of advances made within the last 20 years by well-known experts in the area of theoretical and computational chemistry and physics. The title reflects the celebration of the twentieth anniversary of the “Conference on Current Trends in Computational Chemistry (CCTCC)” to success of which all authors contributed. Starting with the recent development of modeling of solvation effect using the Polarizable Continuum Model (PCM) at the Coupled-Cluster level and the effects of extreme pressure on the molecular properties within the PCM framework, this volume focuses on the association/dissociation of ion pairs in binary solvent mixtures, application of graph theory to determine the all possible structures and temperature-dependent distribution of water cluster, generalized-ensemble algorithms for the complex molecular simulation, QM/MD based investigation of formation of different nanostructures under nonequilibrium conditions, quantum mechanical study of chemical reactivity of carbon nanotube, covalent functionalization of single walled-carbon nanotube, designing of functional materials, importance of long-range dispersion interaction to study nanomaterials, recent advances in QSPR/QSAR analysis of nitrocompounds, prediction of physico-chemical properties of energetic materials, electronic structure and properties of 3d transition metal dimers, the -bond activation reactions by transition metal complexes, theoretical modeling of environmental mercury depletion reaction, organolithium chemistry and computational modeling of low-energy electron induced DNA damage. This volume is aimed at theoretical and computational chemists, physical chemists, materials scientists, and particularly those who are eager to apply computational chemistry methods to problems of chemical and physical importance. This book provides valuable information toundergraduate, graduate, and PhD students as well as to established researchers.
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Written to attract newcomers to the field of computational chemistry Free from complicated theoretical chemistry jargon Provides rudimentary concepts required to grasp the basics Aimed at professionals in the physical sciences, biological sciences, and materials science
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Produktdetaljer

ISBN
9789400709225
Publisert
2012-07-07
Utgiver
Springer
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet
Antall sider
12

Biografisk notat

Jerzy Leszczynski, Professor of Chemistry and Presidential Distinguished Fellow, Department of Chemistry and Biochemistry, Jackson State University Manoj Shukla, Research Professor of Chemistry, Department of Chemistry and Biochemistry, Jackson State University