Creation of New Metal Nanoparticles and Their Hydrogen-Storage and Catalytic Properties (Hardcover, 2014 ed.)


This thesis reports the discovery of metal nanoparticles having new structures that do not exist in bulk state and that exhibit hydrogen storage ability or CO oxidation activity. Research into the reaction of hydrogen with metals has attracted much attention because of potential applications as effective hydrogen storage materials, as permeable films, or as catalysts for hydrogenation. Also, CO oxidation catalysts have been extensively developed because of their importance to CO removal from car exhaust or fuel-cell systems. At the same time, atomic-level (solid solution) alloying has the advantage of being able to continuously control chemical and physical properties of elements by changing compositions and/or combinations of constituent elements. This thesis provides a novel strategy for the basis of inter-elemental fusion to create highly efficient functional materials for energy and material conversions.

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Product Description

This thesis reports the discovery of metal nanoparticles having new structures that do not exist in bulk state and that exhibit hydrogen storage ability or CO oxidation activity. Research into the reaction of hydrogen with metals has attracted much attention because of potential applications as effective hydrogen storage materials, as permeable films, or as catalysts for hydrogenation. Also, CO oxidation catalysts have been extensively developed because of their importance to CO removal from car exhaust or fuel-cell systems. At the same time, atomic-level (solid solution) alloying has the advantage of being able to continuously control chemical and physical properties of elements by changing compositions and/or combinations of constituent elements. This thesis provides a novel strategy for the basis of inter-elemental fusion to create highly efficient functional materials for energy and material conversions.

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Product Details

General

Imprint

Springer Verlag,Japan

Country of origin

Japan

Series

Springer Theses

Release date

July 2014

Availability

Expected to ship within 10 - 15 working days

First published

2014

Authors

Dimensions

235 x 155 x 12mm (L x W x T)

Format

Hardcover

Pages

78

Edition

2014 ed.

ISBN-13

978-4-431-55086-0

Barcode

9784431550860

Categories

LSN

4-431-55086-0



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