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用于绿色能源生产的双金属纳米合金催化剂:合成路线与表征技术的进展

Bimetallic Nanoalloy Catalysts for Green Energy Production: Advances in Synthesis Routes and Characterization Techniques.

作者信息

Ashraf Saima, Liu Yanyan, Wei Huijuan, Shen Ruofan, Zhang Huanhuan, Wu Xianli, Mehdi Sehrish, Liu Tao, Li Baojun

机构信息

Research Center of Green Catalysis, College of Chemistry, Zhengzhou University, 100 Science Road, Zhengzhou, 450001, P. R. China.

College of Science, Henan Agricultural University, 63 Nongye Road, Zhengzhou, 450002, P. R. China.

出版信息

Small. 2023 Oct;19(43):e2303031. doi: 10.1002/smll.202303031. Epub 2023 Jun 25.

Abstract

Bimetallic Nanoalloy catalysts have diverse uses in clean energy, sensing, catalysis, biomedicine, and energy storage, with some supported and unsupported catalysts. Conventional synthetic methods for producing bimetallic alloy nanoparticles often produce unalloyed and bulky particles that do not exhibit desired characteristics. Alloys, when prepared with advanced nanoscale methods, give higher surface area, activity, and selectivity than individual metals due to changes in their electronic properties and reduced size. This review demonstrates the synthesis methods and principles to produce and characterize highly dispersed, well-alloyed bimetallic nanoalloy particles in relatively simple, effective, and generalized approaches and the overall existence of conventional synthetic methods with modifications to prepare bimetallic alloy catalysts. The basic concepts and mechanistic understanding are represented with purposely selected examples. Herein, the enthralling properties with widespread applications of nanoalloy catalysts in heterogeneous catalysis are also presented, especially for Hydrogen Evolution Reaction (HER), Oxidation Reduction Reaction (ORR), Oxygen Evolution Reaction (OER), and alcohol oxidation with a particular focus on Pt and Pd-based bimetallic nanoalloys and their numerous fields of applications. The high entropy alloy is described as a complicated subject with an emphasis on laser-based green synthesis of nanoparticles and, in conclusion, the forecasts and contemporary challenges for the controlled synthesis of nanoalloys are addressed.

摘要

双金属纳米合金催化剂在清洁能源、传感、催化、生物医学和能量存储等领域有多种用途,包括一些负载型和非负载型催化剂。传统的双金属合金纳米颗粒合成方法往往会产生未合金化且体积较大的颗粒,这些颗粒不具备所需特性。当采用先进的纳米级方法制备合金时,由于其电子性质的变化和尺寸的减小,合金比单一金属具有更高的表面积、活性和选择性。本文综述了以相对简单、有效且通用的方法制备和表征高度分散、合金化良好的双金属纳米合金颗粒的合成方法和原理,以及对传统合成方法进行改进以制备双金属合金催化剂的总体情况。通过特意选取的例子阐述了基本概念和机理理解。本文还介绍了纳米合金催化剂在多相催化中具有广泛应用的迷人特性,特别是对于析氢反应(HER)、氧化还原反应(ORR)、析氧反应(OER)和醇氧化反应,尤其关注基于Pt和Pd的双金属纳米合金及其众多应用领域。高熵合金被描述为一个复杂的主题,重点介绍了基于激光的纳米颗粒绿色合成方法,最后讨论了纳米合金可控合成的预测和当前面临的挑战。

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