Combining Quantum Mechanics and Molecular Mechanics Some Recent Progresses in QM MM Methods

Combining Quantum Mechanics and Molecular Mechanics  Some Recent Progresses in QM MM Methods
Author: Anonim
Publsiher: Academic Press
Total Pages: 433
Release: 2010-06-14
Genre: Science
ISBN: 9780123808998

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Advances in Quantum Chemistry presents surveys of current developments in this rapidly developing field. With invited reviews written by leading international researchers, each presenting new results, it provides a single vehicle for following progress in this interdisciplinary area. Publishes articles, invited reviews and proceedings of major international conferences and workshops Written by leading international researchers in quantum and theoretical chemistry Highlights important interdisciplinary developments

Combined Quantum Mechanical and Molecular Mechanical Methods

Combined Quantum Mechanical and Molecular Mechanical Methods
Author: Jiali Gao,Mark A. Thompson
Publsiher: Unknown
Total Pages: 328
Release: 1998
Genre: Medical
ISBN: UOM:39015042820822

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Combined quantum mechanical and molecular mechanical methods (QM/MM) is one of the most promising approaches for quantum mechanical calculations of chemical processes in solution and in enzymes. This book provides an in-depth survey of the methods and applications of these combined techniques in chemistry and biochemistry.

Quantum Mechanical Molecular Mechanical Approaches for the Investigation of Chemical Systems Recent Developments and Advanced Applications

Quantum Mechanical Molecular Mechanical Approaches for the Investigation of Chemical Systems     Recent Developments and Advanced Applications
Author: Thomas S. Hofer,Sam P. de Visser
Publsiher: Frontiers Media SA
Total Pages: 188
Release: 2018-11-28
Genre: Electronic Book
ISBN: 9782889456260

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The QM/MM method, short for quantum mechanical/molecular mechanical, is a highly versatile approach for the study of chemical phenomena, combining the accuracy of quantum chemistry to describe the region of interest with the efficiency of molecular mechanical potentials to represent the remaining part of the system. Originally conceived in the 1970s by the influential work of the the Nobel laureates Martin Karplus, Michael Levitt and Arieh Warshel, QM/MM techniques have evolved into one of the most accurate and general approaches to investigate the properties of chemical systems via computational methods. Whereas the first applications have been focused on studies of organic and biomolecular systems, a large variety of QM/MM implementations have been developed over the last decades, extending the range of applicability to address research questions relevant for both solution and solid-state chemistry as well. Despite approaching their 50th anniversary in 2022, the formulation of improved QM/MM methods is still an active field of research, with the aim to (i) extend the applicability to address an even broader range of research questions in chemistry and related disciplines, and (ii) further push the accuracy achieved in the QM/MM description beyond that of established formulations. While being a highly successful approach on its own, the combination of the QM/MM strategy with other established theoretical techniques greatly extends the capabilities of the computational approaches. For instance the integration of a suitable QM/MM technique into the highly successful Monte-Carlo and molecular dynamics simulation protocols enables the description of the chemical systems on the basis of an ensemble that is in part constructed on a quantum-mechanical basis. This eBook presents the contributions of a recent Research Topic published in Frontiers in Chemistry, that highlight novel approaches as well as advanced applications of QM/MM method to a broad variety of targets. In total 2 review articles and 10 original research contributions from 48 authors are presented, covering 12 different countries on four continents. The range of research questions addressed by the individual contributions provide a lucid overview on the versatility of the QM/MM method, and demonstrate the general applicability and accuracy that can be achieved for different problems in chemical sciences. Together with the development of improved algorithms to enhance the capabilities of quantum chemical methods and the continuous advancement in the capacities of computational resources, it can be expected that the impact of QM/MM methods in chemical sciences will be further increased already in the near future.

QM MM Methods

QM MM Methods
Author: Hai Lin
Publsiher: American Chemical Society
Total Pages: 163
Release: 2024-01-31
Genre: Science
ISBN: 9780841299504

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Many chemical, physical, and biological processes occur in complex environments and span multiple scales in space and time. Combined (hybrid or integrated) quantum-mechanics/molecular-mechanics (QM/MM) is one family of multiscale algorithms for computer modeling these processes. First introduced in 1976, along with critical developments over the following decades, QM/MM is now a popular and powerful tool that helps scientists simultaneously capture the fundamental atomistic details and the overall big picture of these processes. Instead of providing a comprehensive survey of the QM/MM algorithms and their applications, QM/MM Methods focuses on explaining the key concepts in QM/MM methodology and how to interpret the results in applications. The author frequently uses small “toy” model systems to illustrate the fundamental principles, which can be easily generalized to large model systems. Unavoidably, formal proofs and many technical details are left out, for which readers are referred to the relevant literature. QM/MM Methods helps researchers enter the field with a good starting position, empowering them to ask the right questions in their QM/MM applications and select suitable algorithms to address them.

Quantum Modeling of Complex Molecular Systems

Quantum Modeling of Complex Molecular Systems
Author: Jean-Louis Rivail,Manuel Ruiz-Lopez,Xavier Assfeld
Publsiher: Springer
Total Pages: 523
Release: 2015-10-13
Genre: Science
ISBN: 9783319216263

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This multi-author contributed volume includes methodological advances and original applications to actual chemical or biochemical phenomena which were not possible before the increased sophistication of modern computers. The chapters contain detailed reviews of the developments of various computational techniques, used to study complex molecular systems such as molecular liquids and solutions (particularly aqueous solutions), liquid-gas, solid-gas interphase and biomacromolecular systems. Quantum modeling of complex molecular systems is a useful resource for graduate students and fledgling researchers and is also an excellent companion for research professionals engaged in computational chemistry, material science, nanotechnology, physics, drug design, and molecular biochemistry.

Advances in Quantum Chemistry Lowdin Volume

Advances in Quantum Chemistry  Lowdin Volume
Author: Anonim
Publsiher: Academic Press
Total Pages: 408
Release: 2017-02-12
Genre: Science
ISBN: 9780128104002

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Advances in Quantum Chemistry: Lowdin Volume presents a series of articles exploring aspects of the application of quantum mechanics to atoms, molecules, and solids. Celebrates Per-Olov Lowdin, who would have been 100 in 2016 Contains papers by many who use his ideas in theoretical chemistry and physics today

Quantum Mechanical Molecular Mechanical Approaches for the Investigation of Chemical Systems Recent Developments and Advanced Applications

Quantum Mechanical Molecular Mechanical Approaches for the Investigation of Chemical Systems   Recent Developments and Advanced Applications
Author: Anonim
Publsiher: Unknown
Total Pages: 0
Release: 2018
Genre: Electronic Book
ISBN: OCLC:1368430791

Download Quantum Mechanical Molecular Mechanical Approaches for the Investigation of Chemical Systems Recent Developments and Advanced Applications Book in PDF, Epub and Kindle

The QM/MM method, short for quantum mechanical/molecular mechanical, is a highly versatile approach for the study of chemical phenomena, combining the accuracy of quantum chemistry to describe the region of interest with the efficiency of molecular mechanical potentials to represent the remaining part of the system. Originally conceived in the 1970s by the influential work of the the Nobel laureates Martin Karplus, Michael Levitt and Arieh Warshel, QM/MM techniques have evolved into one of the most accurate and general approaches to investigate the properties of chemical systems via computational methods. Whereas the first applications have been focused on studies of organic and biomolecular systems, a large variety of QM/MM implementations have been developed over the last decades, extending the range of applicability to address research questions relevant for both solution and solid-state chemistry as well. Despite approaching their 50th anniversary in 2022, the formulation of improved QM/MM methods is still an active field of research, with the aim to (i) extend the applicability to address an even broader range of research questions in chemistry and related disciplines, and (ii) further push the accuracy achieved in the QM/MM description beyond that of established formulations. While being a highly successful approach on its own, the combination of the QM/MM strategy with other established theoretical techniques greatly extends the capabilities of the computational approaches. For instance the integration of a suitable QM/MM technique into the highly successful Monte-Carlo and molecular dynamics simulation protocols enables the description of the chemical systems on the basis of an ensemble that is in part constructed on a quantum-mechanical basis. This eBook presents the contributions of a recent Research Topic published in Frontiers in Chemistry, that highlight novel approaches as well as advanced applications of QM/MM method to a broad variety of targets. In total 2 review articles and 10 original research contributions from 48 authors are presented, covering 12 different countries on four continents. The range of research questions addressed by the individual contributions provide a lucid overview on the versatility of the QM/MM method, and demonstrate the general applicability and accuracy that can be achieved for different problems in chemical sciences. Together with the development of improved algorithms to enhance the capabilities of quantum chemical methods and the continuous advancement in the capacities of computational resources, it can be expected that the impact of QM/MM methods in chemical sciences will be further increased already in the near future.

Molecular Modeling of Geochemical Reactions

Molecular Modeling of Geochemical Reactions
Author: James D. Kubicki
Publsiher: John Wiley & Sons
Total Pages: 440
Release: 2016-07-22
Genre: Science
ISBN: 9781118845165

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Molecular processes in nature affect human health, the availability of resources and the Earth’s climate. Molecular modelling is a powerful and versatile toolbox that complements experimental data and provides insights where direct observation is not currently possible. Molecular Modeling of Geochemical Reactions: An Introduction applies computational chemistry to geochemical problems. Chapters focus on geochemical applications in aqueous, petroleum, organic, environmental, bio- and isotope geochemistry, covering the fundamental theory, practical guidance on applying techniques, and extensive literature reviews in numerous geochemical sub-disciplines. Topics covered include: • Theory and Methods of Computational Chemistry • Force Field Application and Development • Computational Spectroscopy • Thermodynamics • Structure Determination • Geochemical Kinetics This book will be of interest to graduate students and researchers looking to understand geochemical processes on a molecular level. Novice practitioners of molecular modelling, experienced computational chemists, and experimentalists seeking to understand this field will all find information and knowledge of use in their research.