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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Precious metal nanocrystals for renewable energy electrocatalysis: structural design and controlled synthesis
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Precious metal nanocrystals for renewable energy electrocatalysis: structural design and controlled synthesis

机译:可再生能源电催化分析的贵金属纳米晶体:结构设计和控制合成

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Electrocatalysis plays a crucial role in the transformation between electrical and chemical energy. Particularly, the search for high-performance electrocatalysts lies at the heart of numerous renewable energy conversion and storage technologies, such as water electrolysers and fuel cells, which potentially enable an energy-sustainable society. This Frontier article briefly describes the pathway from debates on "animal electricity" to the current understanding of electrocatalysis, and how knowledge can be harnessed to guide the discovery of well-defined electrocatalysts based on precious metal nanocrystals. We summarize basic design principles and key parameters associated with a good electrocatalyst and highlight the adoption of wet-chemical approaches for constructing nanocatalysts with desired structural properties. We close this article with personal perspectives on current challenges and future research directions in this field.
机译:电催化在电气和化学能之间的转化中起着至关重要的作用。 特别是,寻找高性能电催化剂位于许多可再生能源转换和储存技术的核心,例如水电解器和燃料电池,这可能使能量可持续社会能够实现。 这个前沿文章简要介绍了对“动物电力”的辩论,以目前对电催化的理解,以及如何利用知识,以指导基于贵金属纳米晶体的明确定义电催化剂的发现。 我们总结了与良好电催化剂相关的基本设计原理和关键参数,并突出了采用湿化学方法来构建具有所需结构性能的纳米催化剂。 我们关闭了本文,以个人对当前挑战和未来研究方向的个人观点。

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