双金属纳米颗粒:基础研究和催化应用的进展

IF 3.5 Q3 ENGINEERING, ENVIRONMENTAL
Hongxia Lin, Yuxi Liu, Jiguang Deng, Lin Jing, Zhiwei Wang, Lu Wei, Zhen Wei, Zhiquan Hou, Jinxiong Tao and Hongxing Dai
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引用次数: 0

摘要

双金属纳米颗粒为许多反应提供了很有前景的活性位点,并且这种材料可以以不同的空间分布合成,如无序合金、核壳结构和janus型非均相结构。与单一金属相比,双金属纳米颗粒的催化活性、选择性和稳定性可以通过几何效应、电子效应、多功能效应和混合效应进行修饰。精确控制双金属成分及其分布是获得高性能催化剂的关键。本文综述了负载型双金属纳米材料的制备方法及其催化应用的最新进展。此外,还提供了具有代表性的案例研究,以探讨如何将双金属纳米颗粒用作所需的催化剂,以及如何为目标反应设计特定的功能催化剂。讨论了负载型双金属催化剂在许多反应中的结构-性能关系,以获得基本的认识。提出了具有独特纳米结构的双金属活性组分和元素分布精确控制的合成策略和前景,具有潜在的工业应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bimetallic nanoparticles: advances in fundamental investigations and catalytic applications

Bimetallic nanoparticles: advances in fundamental investigations and catalytic applications

Bimetallic nanoparticles provide promising active sites for many reactions, and such materials can be synthesized with different spatial distributions, such as disordered alloys, core–shell structures, and Janus-type heterogeneous structures. Catalytic activity, selectivity, and stability of bimetallic nanoparticles can be modified by the geometric, electronic, multifunctional and mixing effects, as compared with single metals. Accurate control of bimetallic compositions and their distributions is crucial to obtain high-performance catalysts. The present review summarizes the recent advances in preparation methods and catalytic applications of supported bimetallic nanomaterials. In addition, representative case studies are also provided to investigate how bimetallic nanoparticles can be used as desired catalysts and how specific functional catalysts are designed for targeted reactions. The structure–performance relationships of supported bimetallic catalysts for a number of reactions are discussed to achieve a fundamental understanding. Synthetic strategies and perspectives for precise control of bimetallic active components and element distributions with distinctive nanostructures are proposed for potential industrial applications.

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