Computational Materials Chemistry
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Author |
: Sadasivan Shankar |
Publisher |
: Springer Nature |
Total Pages |
: 1344 |
Release |
: 2021-01-25 |
ISBN-10 |
: 9783030187781 |
ISBN-13 |
: 3030187780 |
Rating |
: 4/5 (81 Downloads) |
Synopsis Computational Materials, Chemistry, and Biochemistry: From Bold Initiatives to the Last Mile by : Sadasivan Shankar
This book provides a broad and nuanced overview of the achievements and legacy of Professor William (“Bill”) Goddard in the field of computational materials and molecular science. Leading researchers from around the globe discuss Goddard’s work and its lasting impacts, which can be seen in today’s cutting-edge chemistry, materials science, and biology techniques. Each section of the book closes with an outline of the prospects for future developments. In the course of a career spanning more than 50 years, Goddard’s seminal work has led to dramatic advances in a diverse range of science and engineering fields. Presenting scientific essays and reflections by students, postdoctoral associates, collaborators and colleagues, the book describes the contributions of one of the world’s greatest materials and molecular scientists in the context of theory, experimentation, and applications, and examines his legacy in each area, from conceptualization (the first mile) to developments and extensions aimed at applications, and lastly to de novo design (the last mile). Goddard’s passion for science, his insights, and his ability to actively engage with his collaborators in bold initiatives is a model for us all. As he enters his second half-century of scientific research and education, this book inspires future generations of students and researchers to employ and extend these powerful techniques and insights to tackle today’s critical problems in biology, chemistry, and materials. Examples highlighted in the book include new materials for photocatalysts to convert water and CO2 into fuels, novel catalysts for the highly selective and active catalysis of alkanes to valuable organics, simulating the chemistry in film growth to develop two-dimensional functional films, and predicting ligand–protein binding and activation to enable the design of targeted drugs with minimal side effects.
Author |
: June Gunn Lee |
Publisher |
: CRC Press |
Total Pages |
: 365 |
Release |
: 2016-11-25 |
ISBN-10 |
: 9781498749756 |
ISBN-13 |
: 1498749755 |
Rating |
: 4/5 (56 Downloads) |
Synopsis Computational Materials Science by : June Gunn Lee
This book covers the essentials of Computational Science and gives tools and techniques to solve materials science problems using molecular dynamics (MD) and first-principles methods. The new edition expands upon the density functional theory (DFT) and how the original DFT has advanced to a more accurate level by GGA+U and hybrid-functional methods. It offers 14 new worked examples in the LAMMPS, Quantum Espresso, VASP and MedeA-VASP programs, including computation of stress-strain behavior of Si-CNT composite, mean-squared displacement (MSD) of ZrO2-Y2O3, band structure and phonon spectra of silicon, and Mo-S battery system. It discusses methods once considered too expensive but that are now cost-effective. New examples also include various post-processed results using VESTA, VMD, VTST, and MedeA.
Author |
: Richard Dronskowski |
Publisher |
: John Wiley & Sons |
Total Pages |
: 300 |
Release |
: 2008-01-08 |
ISBN-10 |
: 9783527612291 |
ISBN-13 |
: 3527612297 |
Rating |
: 4/5 (91 Downloads) |
Synopsis Computational Chemistry of Solid State Materials by : Richard Dronskowski
This is the first book to present both classical and quantum-chemical approaches to computational methods, incorporating the many new developments in this field from the last few years. Written especially for "non"-theoretical readers in a readily comprehensible and implemental style, it includes numerous practical examples of varying degrees of difficulty. Similarly, the use of mathematical equations is reduced to a minimum, focusing only on those important for experimentalists. Backed by many extensive tables containing detailed data for direct use in the calculations, this is the ideal companion for all those wishing to improve their work in solid state research.
Author |
: Richard LeSar |
Publisher |
: Cambridge University Press |
Total Pages |
: 429 |
Release |
: 2013-03-28 |
ISBN-10 |
: 9781107328143 |
ISBN-13 |
: 1107328144 |
Rating |
: 4/5 (43 Downloads) |
Synopsis Introduction to Computational Materials Science by : Richard LeSar
Emphasising essential methods and universal principles, this textbook provides everything students need to understand the basics of simulating materials behaviour. All the key topics are covered from electronic structure methods to microstructural evolution, appendices provide crucial background material, and a wealth of practical resources are available online to complete the teaching package. Modelling is examined at a broad range of scales, from the atomic to the mesoscale, providing students with a solid foundation for future study and research. Detailed, accessible explanations of the fundamental equations underpinning materials modelling are presented, including a full chapter summarising essential mathematical background. Extensive appendices, including essential background on classical and quantum mechanics, electrostatics, statistical thermodynamics and linear elasticity, provide the background necessary to fully engage with the fundamentals of computational modelling. Exercises, worked examples, computer codes and discussions of practical implementations methods are all provided online giving students the hands-on experience they need.
Author |
: Dierk Raabe |
Publisher |
: Wiley-VCH |
Total Pages |
: 408 |
Release |
: 1998-10-27 |
ISBN-10 |
: UOM:39015047514164 |
ISBN-13 |
: |
Rating |
: 4/5 (64 Downloads) |
Synopsis Computational Materials Science by : Dierk Raabe
Modeling and simulation play an ever increasing role in the development and optimization of materials. Computational Materials Science presents the most important approaches in this new interdisciplinary field of materials science and engineering. The reader will learn to assess which numerical method is appropriate for performing simulations at the various microstructural levels and how they can be coupled. This book addresses graduate students and professionals in materials science and engineering as well as materials-oriented physicists and mechanical engineers.
Author |
: Tanmoy Chakraborty |
Publisher |
: CRC Press |
Total Pages |
: 346 |
Release |
: 2017-10-03 |
ISBN-10 |
: 9781351800365 |
ISBN-13 |
: 1351800361 |
Rating |
: 4/5 (65 Downloads) |
Synopsis Computational Chemistry Methodology in Structural Biology and Materials Sciences by : Tanmoy Chakraborty
Computational Chemistry Methodology in Structural Biology and Materials Sciences provides a selection of new research in theoretical and experimental chemistry, focusing on topics in the materials science and biological activity. Part 1, on Computational Chemistry Methodology in Biological Activity, of the book emphasizes presents new developments in the domain of theoretical and computational chemistry and its applications to bioactive molecules. It looks at various aspects of density functional theory and other issues. Part 2, on Computational Chemistry Methodology in Materials Science, presents informative new research on computational chemistry as applied to materials science. The wide range of topics regarding the application of theoretical and experimental chemistry and materials science and biological domain will be valuable in the context of addressing contemporary research problems.
Author |
: Yuriy A. Abramov |
Publisher |
: John Wiley & Sons |
Total Pages |
: 440 |
Release |
: 2016-05-20 |
ISBN-10 |
: 9781119229193 |
ISBN-13 |
: 1119229197 |
Rating |
: 4/5 (93 Downloads) |
Synopsis Computational Pharmaceutical Solid State Chemistry by : Yuriy A. Abramov
This book is the first to combine computational material science and modeling of molecular solid states for pharmaceutical industry applications. • Provides descriptive and applied state-of-the-art computational approaches and workflows to guide pharmaceutical solid state chemistry experiments and to support/troubleshoot API solid state selection • Includes real industrial case examples related to application of modeling methods in problem solving • Useful as a supplementary reference/text for undergraduate, graduate and postgraduate students in computational chemistry, pharmaceutical and biotech sciences, and materials science
Author |
: Kaoru Ohno |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 342 |
Release |
: 1999-08-18 |
ISBN-10 |
: 3540639616 |
ISBN-13 |
: 9783540639619 |
Rating |
: 4/5 (16 Downloads) |
Synopsis Computational Materials Science by : Kaoru Ohno
Powerful computers now enable scientists to model the physical and chemical properties and behavior of complex materials using first principles. This book introduces dramatically new computational techniques in materials research, specifically for understanding molecular dynamics.
Author |
: L.A. Curtiss |
Publisher |
: Springer Science & Business Media |
Total Pages |
: 381 |
Release |
: 2006-01-16 |
ISBN-10 |
: 9781402021176 |
ISBN-13 |
: 1402021178 |
Rating |
: 4/5 (76 Downloads) |
Synopsis Computational Materials Chemistry by : L.A. Curtiss
As a result of the advancements in algorithms and the huge increase in speed of computers over the past decade, electronic structure calculations have evolved into a valuable tool for characterizing surface species and for elucidating the pathways for their formation and reactivity. It is also now possible to calculate, including electric field effects, STM images for surface structures. To date the calculation of such images has been dominated by density functional methods, primarily because the computational cost of - curate wave-function based calculations using either realistic cluster or slab models would be prohibitive. DFT calculations have proven especially valuable for elucidating chemical processes on silicon and other semiconductor surfaces. However, it is also clear that some of the systems to which DFT methods have been applied have large non-dynamical correlation effects, which may not be properly handled by the current generation of Kohn-Sham-based density functionals. For example, our CASSCF calculations on the Si(001)/acetylene system reveal that at some geometries there is extensive 86 configuration mixing. This, in turn, could signal problems for DFT cal- lations on these systems. Some of these problem systems can be addressed using ONIOM or other “layering” methods, treating the primary region of interest with a CASMP2 or other multireference-based method, and treating the secondary region by a lower level of electronic structure theory or by use of a molecular mechanics method. ACKNOWLEDGEMENTS We wish to thank H. Jónsson, C. Sosa, D. Sorescu, P. Nachtigall, and T. -C.
Author |
: |
Publisher |
: Elsevier Science |
Total Pages |
: 0 |
Release |
: 2003-11-25 |
ISBN-10 |
: 0444515186 |
ISBN-13 |
: 9780444515186 |
Rating |
: 4/5 (86 Downloads) |
Synopsis Energetic Materials by :
This volume provides an overview of current research and recent advances in the area of energetic materials, focusing on decomposition, crystal and molecular properties. The contents and format reflect the fact that theory, experiment and computation are closely linked in this field. Since chemical decomposition is of fundamental importance in energetic performance, this volume begins with a survey of the decomposition processes of a variety of energetic compounds. This is followed by detailed studies of certain compounds and specific mechanisms, such as nitro/aci-nitro tautomerism. Chapter 6 covers the transition from decomposition to crystal properties, with molecular dynamics being the primary analytical tool. The next several chapters deal with different aspects of the crystalline state, again moving from the general to particular. There is also a discussion of methods for computing gas, liquid and solid phase heats of formation. Finally, the last portion of this volume looks at the potential of high-nitrogen molecules as energetic systems; this has been of considerable interest in recent years. Overall, this volume illustrates the progress that has been made in the field of energetic materials and some of the areas of current activity. It also indicates the challenges involved in characterizing and understanding the properties and behaviour of these compounds. The work is a unique state-of-the-art treatment of the subject, written by pre-eminent researchers in the field.