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Confinement Effects in Zeolite-Confined Noble Metals

机译:沸石限制贵金属的限制效应

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摘要

Confinement of noble nanometals in a zeolite matrix is a promising way to special types of catalysts that show significant advantages in size control, site adjustment, and nano-architecture design. The beauty of zeolite-confined noble metals lies in their unique confinement effects on a molecular scale, and thus enables spatially confined catalysis akin to enzyme catalysis. In this Minireview, the confined synthesis strategies of zeolite-confined noble metals will be briefly discussed, showing the processes, advantages, features, and mechanisms. The confined catalysis carried on zeolite-confined noble metals will be summarized, and great emphasis will be paid to the confinement effects involving size, encapsulation, recognition, and synergy. Great progress of atomic sites in the size effect, supercage stabilization in the encapsulation effect, site adsorption in the recognition effect, and cascade reaction in the synergy effect are highlighted. This Minireview is concluded with challenges and opportunities in terms of the synthesis of zeolite-confined noble metals and their applications to design multifunctional catalysts with high catalytic activity, selectivity, and stability.
机译:沸石基质中贵纳米的限制是一种有希望的方法,适用于特殊类型的催化剂,其尺寸控制,场地调整和纳米建筑设计具有显着的优势。沸石密闭的贵金属的美丽在于它们对分子尺度的独特限制效应,因此可以使空间局限性催化与酶催化。在这次MINIREVIEW中,将简要讨论Zeolite限制贵金属的狭窄的合成策略,显示过程,优点,特征和机制。将概述在沸石限制贵金属上进行的狭窄的催化,并将重视涉及规模,封装,识别和协同作用的监禁效应。原子位点在尺寸效应中的巨大进展,封装效果中的叠加稳定,识别效应中的位点吸附,以及协同效应中的级联反应。在沸石限制贵金属的合成方面,该尖端概述了挑战和机会,以设计具有高催化活性,选择性和稳定性的多功能催化剂。

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