£140.86

Elsevier Molecular Modeling of the Sensitivities of Energetic Materials (Volume 22) (Theoretical and Computational Chemistry, Volume 22)

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Description

Product Description Molecular Modeling of the Sensitivities of Energetic Materials is an authoritative guide to this exciting field of research, providing practical guidelines for implementing predictive models and their application to the search for new compounds. Beginning with an introduction to experimental aspects, the book then explores relationships between sensitivity, molecular structure and crystal structure, before going on to discuss insights from numerical simulations. The book then highlights applications of these approaches to the design of new materials. The strict safety requirements associated with experimental studies of energetic materials warrant a computer-aided approach for the investigation and design of safe and powerful explosives or propellants. Models must therefore be developed to allow evaluation of significant properties from the structure of constitutive molecules. Much recent effort has been put into modeling sensitivities, with most work focusing on impact sensitivity, leading to a lot of experimental data in this area. Modern machine learning techniques, new physics-based models, and new reactive molecular dynamics and multiscale simulation methods have subsequently led to quantitative procedures applicable to large datasets and yielded valuable insight into the underlying initiation mechanisms. Review An authoritative guide to the latest techniques for molecular modeling and assessment of the sensitivities of energetic materials From the Back Cover <p>The strict safety requirements associated with experimental studies of energetic materials warrant a computer-aided approach for the investigation and design of safe and powerful explosives or propellants. Models must therefore be developed to allow evaluation of significant properties from the structure of constitutive molecules. Much recent effort has been put into modeling sensitivities, with most work focusing on impact sensitivity, leading to a lot of experimental data in this area. Modern machine learning techniques, new physics-based models, and new reactive molecular dynamics and multiscale simulation methods have subsequently led to quantitative procedures applicable to large datasets and yielded valuable insight into the underlying initiation mechanisms. <i>Molecular Modeling of the Sensitivities of Energetic Materials </i>highlights these latest developments. </p> <p>Beginning with an introduction to experimental aspects in Part 1, Parts 2 and 3 then explore relationships between sensitivity, molecular structure and crystal structure, before going on to discuss insights from numerical simulations in Part 4. Part 5 then highlights applications of these approaches to the design of new materials. </p> <p>Providing practical guidelines for implementing predictive models and their application to the search for new compounds, <i>Molecular Modeling of the Sensitivities of Energetic Materials</i> is an authoritative guide to this exciting field of research. </p> About the Author Didier Mathieu has been researching the molecular modelling of energetic materials at the Commissariat a L'Energie Atomique since 1994. After completing his studies in Physics Engineering at the Institut Polytechnique de Grenoble, France, he stayed on to complete a Masters in Condensed Matter Physics and a PhD in Physical Sciences, before moving on to a French Habilitation to supervise research at the University of Tours. He has published over 50 research papers relating to the fields of polymer physics and molecular modelling of energetic materials, and has extensive practical experience in the field.

Product Specifications

Format
paperback
Domain
Amazon UK
Release Date
09 April 2022
Listed Since
01 February 2020

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