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Carbon-Based Materials for the Development of Highly Dispersed Metal Catalysts: Towards Highly Performant Catalysts for Fine Chemical Synthesis

机译:基于碳的材料,用于开发高度分散的金属催化剂:朝向高度性能的催化剂进行精细化学合成

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摘要

Single-atom catalysts (SACs), consisting of metals atomically dispersed on a support, are considered as advanced materials bridging homogeneous and heterogeneous catalysis, representing the catalysis at the limit. The enhanced performance of these catalysts is due to the combination of distinct factors such as well-defined active sites, comprising metal single atoms in different coordination environments also varying its valence state and strongly interacting with the support, in this case porous carbons, maximizing then the metal efficiency in comparison with other metal surfaces consisting of metal clusters and/or metal nanoparticles. The purpose of this review is to summarize the most recent advances in terms of both synthetic strategies of producing porous carbon-derived SACs but also its application to green synthesis of highly valuable compounds, an area in which the homogeneous catalysts are classically used. Porous carbon-derived SACs emerge as a type of new and eco-friendly catalysts with great potential. Different types of carbon forms, such as multi-wall carbon nanotubes (MWCNTs), graphene and graphitic carbon nitride or even others porous carbons derived from Metal–Organic-Frameworks (MOFs) are recognized. Although it represents an area of expansion, experimentally and theoretically, much more future efforts are needed to explore them in green fine chemical synthesis.
机译:由原子分散在载体上的金属组成的单原子催化剂(囊)被认为是桥接均匀和异质催化的先进材料,其在极限下表示催化。这些催化剂的增强性能是由于不同因素的组合,例如定义的活性位点,包括在不同配位环境中的金属单个原子也改变其价态并与支撑件强烈地相互作用,在这种情况下,在这种情况下,最大化碳与由金属簇和/或金属纳米颗粒组成的其他金属表面相比的金属效率。本综述的目的是总结生产多孔碳源囊的合成策略的最新进展,而且还将其应用于高度有价值化合物的绿色合成,其中均相催化剂经典使用的区域。多孔碳源的囊作为一种具有巨大潜力的新型和环保催化剂。识别不同类型的碳形式,例如多壁碳纳米管(MWCNT),石墨烯和石墨碳氮化物甚至是其他源自金属 - 有机框架(MOF)的多孔碳。虽然它代表了一种扩展领域,实验和理论上,需要更需要更大的努力来探索绿色细化学合成。

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