Description
Key Features * Includes a thorough review of the technical basis of relevant contemporary methodologies including minimization, Monte-Carlo, molecular dynamics, simulated annealing methods, and electronic structure methods * Highlights applications to amorphous and crystalline solids * Surveys simulations of surface and defect properties of solids * Discusses applications to molecular and inorganic solids
About the Author
Richard Catlow is Professor of Computational Chemistry at University College London and Cardiff University, UK, having previously held positions as the Director of the Davy-Faraday Research Laboratory, and Wolfson Professor of Natural Philosophy at the Royal Institution. He served both as Head of Department of Chemistry and Dean of Mathematical and Physical Sciences at UCL. He was elected Fellow of the Royal Society (he UK Academy of Sciences in 2004 and of the German National Science Academy (The Leopoldina) in 2020. He received his BA in Chemistry from Oxford University in 1970 before securing his PhD in Chemistry from the same institution in 1973. Professor Catlow co-founded the UK Catalysis Hub at Harwell in 2013 and has served as Foreign Secretary and Vice-President for the Royal Society from 2016-21. In 2020 he was awarded a knighthood in the Queen's Birthday Honours for services to leadership in science and research. He is series editor for the Elsevier Methods in Molecular and Materials Modelling book series which started in 2022.
Reviews
"This work surveys a variety of atomistic computer modeling techniques as applied to crystalline inorganic materials...This book is an excellent choice as an introduction to its title field... The book does a good job of conveying the flavor of current modeling techniques, and the direction in which they are being developed." --JOURNAL OF CHEMICAL & INFORMATION SCIENCE, 1997
Book Information
ISBN 9780121641351
Author C. Richard A. Catlow
Format Hardback
Page Count 340
Imprint Academic Press Inc
Publisher Elsevier Science Publishing Co Inc
Weight(grams) 700g