Yancai Yao
Controllable Synthesis and Atomic Scale Regulation of Noble Metal Catalysts
Controllable Synthesis and Atomic Scale Regulation of Noble Metal Catalysts
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- More about Controllable Synthesis and Atomic Scale Regulation of Noble Metal Catalysts
This book discusses the preparation of metal nanocrystals and their applications in energy conversion and storage, as well as the controllable synthesis of water splitting electrode materials by defect engineering and synergistic effect. It also utilizes in-situ technologies and theoretical calculations to reveal the catalytic mechanisms of catalysts under realistic operating conditions.
Format: Paperback / softback
Length: 119 pages
Publication date: 30 March 2023
Publisher: Springer Verlag, Singapore
This captivating book delves into the intricate world of preparing metal nanocrystals and their diverse applications. It emphasizes the strategic design of noble metal nanocrystals at the atomic scale, with a particular focus on their utilization for energy conversion and storage. Moreover, it delves into the controlled synthesis of water-splitting electrode materials, encompassing anodic oxygen evolution reaction (OER) and cathode hydrogen evolution reaction (HER), through defect engineering and synergistic effects. Additionally, in-situ technologies and theoretical calculations are employed to unveil the catalytic mechanisms of catalysts in realistic operating conditions. The groundbreaking findings presented in this book not only advance the frontiers of nano-research but also foster international collaboration and promote the growth of scientific endeavors.
Introduction:
This book serves as a comprehensive guide for those interested in exploring the realm of metal nanocrystals and their remarkable applications. It begins by introducing readers to the fundamental concepts and techniques involved in the preparation of these tiny particles, which hold immense potential for various fields.
Noble Metal Nanocrystals for Energy Conversion and Storage:
One of the key highlights of this book is its emphasis on designing noble metal nanocrystals at the atomic scale. By harnessing the unique properties of these materials, researchers can develop efficient energy conversion and storage systems. The authors discuss strategies for tailoring the size, shape, and composition of nanocrystals to optimize their performance in solar cells, fuel cells, and other energy-related applications.
Controlled Synthesis of Water-Splitting Electrode Materials:
In addition to energy conversion, the book also delves into the controllable synthesis of water-splitting electrode materials. These materials are crucial for generating clean and renewable energy by splitting water into hydrogen and oxygen. The authors discuss advanced techniques such as defect engineering and synergistic effects to enhance the performance of these electrode materials, making them more efficient and cost-effective.
In-Situ Technologies and Theoretical Calculations:
To gain a deeper understanding of the catalytic mechanisms of metal nanocrystals, the book employs in-situ technologies and theoretical calculations. These tools allow researchers to study the behavior of catalysts under realistic operating conditions, providing valuable insights into their catalytic activities. The findings obtained from these studies not only enrich research in the nano-field but also have significant implications for promoting national and international cooperation.
Conclusion:
In conclusion, this book offers a comprehensive and insightful exploration of the preparation of metal nanocrystals and their diverse applications. It provides valuable insights into the design of noble metal nanocrystals for energy conversion and storage, the controlled synthesis of water-splitting electrode materials, and the utilization of in-situ technologies and theoretical calculations to reveal the catalytic mechanisms of catalysts. The findings presented in this book not only advance the frontiers of nano-research but also have the potential to impact various industries and promote sustainable development. Whether you are a researcher, scientist, or engineer, this book is a must-read for anyone interested in exploring the exciting world of metal nanocrystals and their potential applications.
Weight: 215g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811902079
Edition number: 1st ed. 2022
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