分子氧丙烯环氧化:从纳米粒子到单原子催化剂的进展。

Smart molecules : open access Pub Date : 2024-11-24 eCollection Date: 2024-12-01 DOI:10.1002/smo.20240025
Qiuming He, Dong Lin, Defu Yin, Chaohe Yang, De Chen, Xiang Feng
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引用次数: 0

摘要

环氧丙烷作为有机合成中间体具有举足轻重的作用,下游应用广泛,市场前景广阔。分子氧法环氧化丙烯因其经济高效、环境友好、操作简便、产品分离简单等优点而受到广泛关注。本文提供了一个深入探索的最新进展,从纳米粒子到单原子催化剂(SACs),在使用分子氧丙烯环氧化的背景下。传统的纳米颗粒催化剂,包括基于银、铜和其他金属的催化剂,在机理研究中考察了它们对支撑效应、电子效应或晶体平面效应的贡献。此外,还讨论了新兴SACs(特别是Mo, Cu和Co)的合成策略,表征方法和机理研究。这一全面的综述揭示了新的设计策略,相关的表征和彻底的机理研究,旨在促进高效催化剂的发展,从而加快丙烯环氧化工业实施的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Propene epoxidation with molecular oxygen: Advancements from nanoparticle to single-atom catalysts.

Propylene oxide plays a pivotal role as an organic synthesis intermediate, boasting extensive downstream applications and promising market prospects. Propene epoxidation via molecular oxygen has garnered considerable attention due to its cost-effectiveness, environmental friendliness, ease of operation, and straightforward product separation. This paper provides an in-depth exploration of recent advancements, ranging from nanoparticle to Single-atom catalysts (SACs), in the context of propene epoxidation using molecular oxygen. Conventional nanoparticle catalysts, including those based on Ag, Cu, and other metals, are examined with regard to their contributions to support effects, electron effects, or crystal-plane effects within the mechanistic investigation. Furthermore, emerging SACs (specifically Mo, Cu, and Co) are discussed in terms of synthesis strategies, characterization methods, and mechanism studies. This comprehensive review sheds new light on design strategies, relevant characterizations, and thorough mechanism investigations aimed at fostering the development of efficient catalysts, thereby expediting progress in the industrial implementation of propene epoxidation.

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