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Solvation Effects on Molecules and Biomolecules

Solvation Effects on Molecules and Biomolecules
Author: Sylvio Canuto
Publisher: Springer Science & Business Media
Total Pages: 536
Release: 2010-07-03
Genre: Science
ISBN: 1402082703

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This volume is an interdisciplinary treatise on the theoretical approach to solvation problems. It describes the essential details of the theoretical methods and places them into the context of modern applications, and hence is of broad interest to theoreticians and experimentalists. The assembly of these modern methods and applications into one volume is a unique contribution to date and gives a broad and ample description of the field in its present stage of development.


Molecular Theory of Solvation

Molecular Theory of Solvation
Author: F. Hirata
Publisher: Springer Science & Business Media
Total Pages: 366
Release: 2006-04-11
Genre: Science
ISBN: 1402025904

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Molecular Theory of Solvation presents the recent progress in the statistical mechanics of molecular liquids applied to the most intriguing problems in chemistry today, including chemical reactions, conformational stability of biomolecules, ion hydration, and electrode-solution interface. The continuum model of "solvation" has played a dominant role in describing chemical processes in solution during the last century. This book discards and replaces it completely with molecular theory taking proper account of chemical specificity of solvent. The main machinery employed here is the reference-interaction-site-model (RISM) theory, which is combined with other tools in theoretical chemistry and physics: the ab initio and density functional theories in quantum chemistry, the generalized Langevin theory, and the molecular simulation techniques. This book will be of benefit to graduate students and industrial scientists who are struggling to find a better way of accounting and/or predicting "solvation" properties.


Solvent Effects and Chemical Reactivity

Solvent Effects and Chemical Reactivity
Author: Orlando Tapia
Publisher: Springer Science & Business Media
Total Pages: 383
Release: 2006-04-11
Genre: Science
ISBN: 0306469316

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This book gathers original contributions from a selected group of distinguished researchers that are actively working in the theory and practical applications of solvent effects and chemical reactions. The importance of getting a good understanding of surrounding media effects on chemical reacting system is difficult to overestimate. Applications go from condensed phase chemistry, biochemical reactions in vitro to biological systems in vivo. Catalysis is a phenomenon produced by a particular system interacting with the reacting subsystem. The result may be an increment of the chemical rate or sometimes a decreased one. At the bottom, catalytic sources can be characterized as a special kind of surrounding medium effect. The materials involving in catalysis may range from inorganic components as in zeolites, homogenous components, enzymes, catalytic antibodies, and ceramic materials. . With the enormous progress achieved by computing technology, an increasing number of models and phenomenological approaches are being used to describe the effects of a given surrounding medium on the electronic properties of selected subsystem. A number of quantum chemical methods and programs, currently applied to calculate in vacuum systems, have been supplemented with a variety of model representations. With the increasing number of methodologies applied to this important field, it is becoming more and more difficult for non-specialist to cope with theoretical developments and extended applications. For this and other reasons, it is was deemed timely to produce a book where methodology and applications were analyzed and reviewed by leading experts in the field.


The Chemical Physics of Solvation

The Chemical Physics of Solvation
Author: Revaz R. Dogonadze
Publisher: Elsevier Science & Technology
Total Pages: 834
Release: 1985
Genre: Science
ISBN:

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The importance of solvation as a concept which covers quite generally the interactions between a molecular solute particle and a macroscopic body of surrounding solvent is well recognized. Solvation plays a major role in the distribution of elements in the geo- and hydrosphere, and most chemical and biological processes involve solvated reactants and products, the electronic and molecular structure of which are strongly determined by solvation. This three-volume monograph has been written collectively by 50 authors from 14 countries who are specialists in different areas of solvation science. Part A deals with the theory of solvation; Part B is entirely devoted to spectroscopy of solvation; and Part C covers solvation phenomena in specific physical, chemical and biological systems. The volumes will be an invaluable reference source for physicists, physical chemists and biophysicists undertaking investigations into the diversified and fascinating areas of the physics and chemical physics of solvation at postgraduate and professional research levels.


Solvent Effects on Chemical Phenomena

Solvent Effects on Chemical Phenomena
Author: Edward Amis
Publisher: Elsevier
Total Pages: 487
Release: 2012-12-02
Genre: Science
ISBN: 0323148522

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Solvent Effects on Chemical Phenomena, Volume I discusses the developments in the understanding of solvent effects on chemical phenomena in solution. This five-chapter volume begins with a discussion on the general concepts of various solvation types, including positive and negative, inner and outer sphere, and mixed component. The subsequent chapter deals with the determination of the actual solvation number for single ions. A short list of the total effective hydration numbers of electrolytes determined from temperature dependence of proton shifts is also provided in this chapter. Another chapter presents a number of examples of the unusual properties of certain mixed aqueous systems. The solvent effects on reaction rates and mechanisms are highlighted in the concluding chapter. This chapter also covers various types of solvents, such as protic and dipolar aprotic. The enthalpy and entropy of activation in salvation and the Finkelstein reactions are also discussed. Research chemists and scientists, teachers, and students with courses in solution chemistry will greatly benefit from this volume.


Solvent Effects on the Stability of Biomolecules

Solvent Effects on the Stability of Biomolecules
Author:
Publisher:
Total Pages: 0
Release: 1999
Genre:
ISBN:

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The goal of the proposal was to develop rapid computational methods for the accurate calculation of conformational free energies, binding free energies and solvation free energies of biomolecules. This was accomplished through (a) the development of an accurate parameter set for the calculation of solvation free energies, (b) the design of a new method to carry out high level quantum mechanical calculations in different solvent/macromolecule environments, (c) the design of a new method to calculate alkane/water partition coefficients, and (d) the development of a general quantum mechanical/continuum method to calculate solvation free energies. The availability of simple physical models to calculate solvent effects on stability should provide a firm physical basis for the design of new proteins and biomimetics with desired solubilities and stabilities in different environments.


Labs on Chip

Labs on Chip
Author: Eugenio Iannone
Publisher: CRC Press
Total Pages: 1351
Release: 2018-09-03
Genre: Medical
ISBN: 1351832069

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Labs on Chip: Principles, Design and Technology provides a complete reference for the complex field of labs on chip in biotechnology. Merging three main areas— fluid dynamics, monolithic micro- and nanotechnology, and out-of-equilibrium biochemistry—this text integrates coverage of technology issues with strong theoretical explanations of design techniques. Analyzing each subject from basic principles to relevant applications, this book: Describes the biochemical elements required to work on labs on chip Discusses fabrication, microfluidic, and electronic and optical detection techniques Addresses planar technologies, polymer microfabrication, and process scalability to huge volumes Presents a global view of current lab-on-chip research and development Devotes an entire chapter to labs on chip for genetics Summarizing in one source the different technical competencies required, Labs on Chip: Principles, Design and Technology offers valuable guidance for the lab-on-chip design decision-making process, while exploring essential elements of labs on chip useful both to the professional who wants to approach a new field and to the specialist who wants to gain a broader perspective.


Many-Body Effects and Electrostatics in Biomolecules

Many-Body Effects and Electrostatics in Biomolecules
Author: Qiang Cui
Publisher: CRC Press
Total Pages: 590
Release: 2016-03-30
Genre: Science
ISBN: 9814613932

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As computational hardware continues to develop at a rapid pace, quantitative computations are playing an increasingly essential role in the study of biomolecular systems. One of the most important challenges that the field faces is to develop the next generation of computational models that strike the proper balance of computational efficiency and


Molecular Theory of Solvation

Molecular Theory of Solvation
Author: F Hirata
Publisher: Springer
Total Pages: 372
Release: 2014-01-15
Genre:
ISBN: 9789401739795

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Molecular Theory of Solvation presents the recent progress in the statistical mechanics of molecular liquids applied to the most intriguing problems in chemistry today, including chemical reactions, conformational stability of biomolecules, ion hydration, and electrode-solution interface. The continuum model of "solvation" has played a dominant role in describing chemical processes in solution during the last century. This book discards and replaces it completely with molecular theory taking proper account of chemical specificity of solvent. The main machinery employed here is the reference-interaction-site-model (RISM) theory, which is combined with other tools in theoretical chemistry and physics: the ab initio and density functional theories in quantum chemistry, the generalized Langevin theory, and the molecular simulation techniques. This book will be of benefit to graduate students and industrial scientists who are struggling to find a better way of accounting and/or predicting "solvation" properties.