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Single Atom Catalysts on Carbon-Based Materials

机译:碳基材料上的单个原子催化剂

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摘要

Metal particle size is an important parameter to consider when looking at supported catalyst performances. As for other properties, surface reactivity of metallic nanoparticles is thus highly size-dependent. The smallest size that can be reached for this type of object is of course the isolated atom deposited on a support. The preparation of single-atom catalysts (SAC) is not trivial, since to avoid clustering, the mean adsorption energy of the metal on the support should be higher than its cohesive energy. The choice of a support that allows a strongly interacting environment with the metal is therefore a key step in the preparation of such catalysts. The spectrum of carbon (nano)materials is very broad, and their structure as well as their surface chemistry, although sometime complex, can be tuned and exploited for the stabilization of SAC. This Review summarizes in a comprehensive manner experimental and computational studies aiming at: i) preparing SAC on carbon materials, ii) understanding the metal-support interactions in SAC, and iii) studying how this relates to catalytic performances. The use of SAC follows well the needs dictated by society (energy and environment issues), and many studies have already been published in various fields, such as thermal catalysis, photocatalysis and electrocatalysis.
机译:金属粒度是在看支持的催化剂性能时需要考虑的重要参数。至于其他性质,金属纳米颗粒的表面反应性因此高度依赖性。对于这种类型的物体可以达到的最小尺寸当然当然是沉积在支撑上的隔离原子。单原子催化剂(SAC)的制备不差,因为为了避免聚类,支撑件上的金属的平均吸附能量应高于其粘性能量。因此,允许具有金属的强烈相互作用的环境的载体的选择是制备这种催化剂的关键步骤。碳(纳米)材料的光谱非常宽,并且它们的结构以及它们的表面化学虽然有时复杂,但可以调整和剥削囊状的稳定。本综述总结了旨在:i)在碳材料上制备囊的综合性和计算研究,ii)了解囊中的金属支持相互作用,以及III)研究涉及催化性能。使用SAC遵循社会(能源和环境问题)所指的需求,并且许多研究已经在各种领域发表,例如热催化,光催化和电殖分析。

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