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Title:
Surface and Nanomolecular Catalysis |
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Division: Nano-related / CRC Press / 英文版 |
Author/Editor: Ryan Richards Star:      |
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ISBN: 1574444816 |
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Introduce Date: 2007年11月07日01:09 , Release Date: 2007年11月14日13:30 |
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Introducer: welai , Rate: 21/321 |
| Format: pdf(editorial) Download |
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| Appraiser: jzhhua | Grade: +1 | Reason: ( 相关地址失效了,没有找到链接,是ZHENMA大哥的著作啊,要拜读一下 ) | |
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| Description: |
Surface and Nanomolecular Catalysis
Ryan Richards Colorado School of Mines, Golden, Colorado, USA
ISBN: 9781574444810
ISBN 10: 1574444816
Publication Date: 5/25/2006
Number of Pages: 552
Details the implications of new properties observed in nanoscale materials that do not exist in their larger counterparts
Discusses heterogeneous catalysts including metal oxides, colloids, microporous and mesoporous materials, fuel cell catalysts, and skeletal catalysts
Examines heterogeneous photocatalysis, liquid-phase oxidations catalyzed by polyoxometalates, and enantioselective heterogeneous catalysis
Highlights the growing role of high-throughput experimentation and combinatorial approaches
Features the contributions of leading scientists in academia and industry with a range of backgrounds including chemistry, physics, chemical engineering, and materials science
Using new instrumentation and experimental techniques that allow scientists to observe chemical reactions and molecular properties at the nanoscale, the authors of Surface and Nanomolecular Catalysis reveal new insights into the surface chemistry of catalysts and the reaction mechanisms that actually occur at a molecular level during catalysis. While each chapter contains the necessary background and explanations to stand alone, the diverse collection of chapters shows how developments from various fields each contributed to our current understanding of nanomolecular catalysis as a whole.
The book describes how the size and shape of materials at the nanoscale can change their chemical and physical properties and promote more efficient reactions with fewer by-products. First it highlights the preparation, characterization, and applications of heterogeneous and supported metal catalysts. Then it covers the engineering of catalytic processes, structure and reaction control, and texturological properties of catalytic systems. The authors explain how surface science can elucidate reaction mechanisms and discuss the growing role of high-throughput experimentation and combinatorial approaches in catalysis.
From fundamental concepts to future directions, Surface and Nanomolecular Catalysis offers a well-rounded compilation of noteworthy developments which will continue to expand and transform our understanding of catalysis, particularly in the context of clean energy and environmental applications such as fuel cells.
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