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Computational Approaches to Energy Materials
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Computational Approaches to Energy Materials

Book Details

Format Hardback or Cased Book
ISBN-10 1119950937
ISBN-13 9781119950936
Publisher John Wiley & Sons Inc
Imprint John Wiley & Sons Inc
Country of Manufacture GB
Country of Publication GB
Publication Date May 17th, 2013
Print length 318 Pages
Weight 762 grams
Dimensions 25.20 x 17.40 x 2.00 cms
Product Classification: Materials science
Ksh 24,100.00
Werezi Extended Catalogue 0 in stock

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The development of materials for clean and efficient energy generation and storage is one of the most rapidly developing, multi-disciplinary areas of contemporary science, driven primarily by concerns over global warming, diminishing fossil-fuel reserves, the need for energy security, and increasing consumer demand for portable electronics.
The development of materials for clean and efficient energy generation and storage is one of the most rapidly developing, multi-disciplinary areas of contemporary science, driven primarily by concerns over global warming, diminishing fossil-fuel reserves, the need for energy security, and increasing consumer demand for portable electronics. Computational methods are now an integral and indispensable part of the materials characterisation and development process.   Computational Approaches to Energy Materials presents a detailed survey of current computational techniques for the development and optimization of energy materials, outlining their strengths, limitations, and future applications.  The review of techniques includes current methodologies based on electronic structure, interatomic potential and hybrid methods. The methodological components are integrated into a comprehensive survey of applications, addressing the major themes in energy research. Topics covered include: • Introduction to computational methods and approaches • Modelling materials for energy generation applications: solar energy and nuclear energy • Modelling materials for storage applications: batteries and hydrogen • Modelling materials for energy conversion applications: fuel cells, heterogeneous catalysis and solid-state lighting • Nanostructures for energy applications This full colour text is an accessible introduction for newcomers to the field, and a valuable reference source for experienced researchers working on computational techniques and their application to energy materials.

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