Geometric and Electronic Perspectives on Dual-Atom Catalysts for Advanced Oxidation Processes

IF 6.1 1区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Bofan Zhang, Jialiang Rui, Ye Zhang, Luyu Yang, Shiro Kubuki, Yang-Chun Yong, Liang Zhang
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引用次数: 0

Abstract

With the escalating global challenges of energy scarcity and environmental pollution, the development of efficient and sustainable catalytic technologies has become imperative. Dual-atom catalysts (DACs) have garnered considerable interest, particularly in various catalytic process, demonstrating exceptional promise in enhancing reaction efficiency and selectivity. Unlike prior reviews that primarily emphasize specific or one single reaction process, this review provides a systematic and comprehensive analysis of DACs across diverse oxidation chemistry, including ozone oxidation, Fenton-like reactions, photo/electro/piezo-catalysis, and enzyme-mimetic oxidation. It begins with a concise overview of the discovery, development, and evolution of DACs, alongside a profound investigation of diverse synthesis strategies and state-of-the-art characterization techniques. Moreover, the remarkable improvement of DACs in catalytic process delves into how the geometric microstructure and electronic configuration of DACs including charge transfer, coordination environment, spin state, influence catalytic kinetics and thermodynamics, exploring the relationships between structural geometry, electronic interactions, and catalysis mechanisms. By integrating these multidimensional insights, the review expands conventional paradigms in DACs development and identifies innovative pathways for linking microstructure and catalysis mechanism. Finally, it also emphasizes critical research gaps and emerging opportunities of DACs that warrant further exploration and attention. This review would provide valuable guidance and foundational in rapidly evolving field of DACs.
高级氧化过程中双原子催化剂的几何和电子观点
随着全球能源短缺和环境污染问题日益严重,发展高效、可持续的催化技术势在必行。双原子催化剂在提高反应效率和选择性方面表现出非凡的前景,特别是在各种催化过程中引起了人们的广泛关注。与以往的综述主要强调特定的或单一的反应过程不同,本综述提供了系统和全面的分析不同氧化化学的dac,包括臭氧氧化,芬顿样反应,光/电/压电催化和模拟酶氧化。它首先简要概述了DACs的发现、发展和演变,同时深入研究了各种合成策略和最先进的表征技术。此外,DACs在催化过程中的显著改进,深入研究了DACs的几何微观结构和电子构型(包括电荷转移、配位环境、自旋态)如何影响催化动力学和热力学,探索了结构几何、电子相互作用和催化机理之间的关系。通过整合这些多维的见解,本文扩展了DACs开发的传统范式,并确定了连接微观结构和催化机制的创新途径。最后,它还强调了关键的研究差距和DACs的新兴机会,值得进一步探索和关注。本文的综述将为快速发展的dac领域提供有价值的指导和基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Inorganic Chemistry Frontiers
Inorganic Chemistry Frontiers CHEMISTRY, INORGANIC & NUCLEAR-
CiteScore
10.40
自引率
7.10%
发文量
587
审稿时长
1.2 months
期刊介绍: The international, high quality journal for interdisciplinary research between inorganic chemistry and related subjects
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