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Controllable Synthesis and Atomic Scale Regulation of Noble Metal Catalysts: Springer Theses

Autor Yancai Yao
en Limba Engleză Hardback – 29 mar 2022
This book introduces readers to the preparation of metal nanocrystals and its applications. In this book, an important point highlighted is how to design noble metal nanocrystals at the atomic scale for energy conversion and storage. It also focuses on the controllable synthesis of water splitting electrode materials including anodic oxygen evolution reaction (OER) and cathode hydrogen evolution reaction (HER) at the atomic level by defect engineering and synergistic effect. In addition, in-situ technologies and theoretical calculations are utilized to reveal the catalytic mechanisms of catalysts under realistic operating condition. The findings presented not only enrich research in the nano-field, but also support the promotion of national and international cooperation.
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Specificații

ISBN-13: 9789811902048
ISBN-10: 9811902046
Pagini: 119
Ilustrații: XII, 119 p. 108 illus., 99 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.36 kg
Ediția:1st ed. 2022
Editura: Springer Nature Singapore
Colecția Springer
Seria Springer Theses

Locul publicării:Singapore, Singapore

Cuprins

Overviews of noble metal nanocrystals.- Advanced synthesis methods of noble metal nanocrystals.- Characterization methods for noble metal nanocrystals.- Applications of noble metal nanocrystals.- Electrocatalytic water splitting technology.- Conclusions.

Notă biografică

Dr. Yancai Yao received her doctoral degree from The University of Science and Technology of China (USTC). Her research interests are focused on controlled preparation of noble metal nanomaterials and energy conversion/storage application.

Textul de pe ultima copertă

This book introduces readers to the preparation of metal nanocrystals and its applications. In this book, an important point highlighted is how to design noble metal nanocrystals at the atomic scale for energy conversion and storage. It also focuses on the controllable synthesis of water splitting electrode materials including anodic oxygen evolution reaction (OER) and cathode hydrogen evolution reaction (HER) at the atomic level by defect engineering and synergistic effect. In addition, in-situ technologies and theoretical calculations are utilized to reveal the catalytic mechanisms of catalysts under realistic operating condition. The findings presented not only enrich research in the nano-field, but also support the promotion of national and international cooperation.

Caracteristici

Is nominated as an outstanding Ph.D. thesis by the University of Science and Technology of China Proposes new strategies for constructing catalyst at the atomic scale Uses in-situ techniques to reveal the realistic catalytic of active sites