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首页> 外文期刊>Chemistry - A European Journal >An Atomic-Level Strategy for Unraveling Gold Nanocatalysis from the Perspective of Aun(SR)m Nanoclusters
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An Atomic-Level Strategy for Unraveling Gold Nanocatalysis from the Perspective of Aun(SR)m Nanoclusters

机译:Au n (SR) m 纳米团簇视角的原子级解金纳米催化策略

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An atomic-level strategy is devised to gain insight into the origin of nanogold catalysis by using atomically monodisperse Aun(SR)m nanoclusters as well-defined catalysts for styrene oxidation. The Aun(SR)m nanoclusters are emerging as a new class of gold nanocatalyst to overcome the polydispersity of conventional nanoparticle catalysts. The unique atom-packing structure and electronic properties of Aun(SR)m nanoclusters (2 nm) are rationalized to be responsible for their extraordinary catalytic activity observed in styrene oxidation. An interesting finding is that quantum size effects of Aun(SR)m nanoclusters, rather than the higher specific surface area, play a major role in gold-catalyzed selective oxidation of styrene. For example, Au25(SR)18 nanoclusters (≈1 nm) are found to be particularly efficient in activating O2, which is a key step in styrene oxidation, and hence, the ultrasmall Au25 catalyst exhibits higher activity than do larger sizes. This atomic-level strategy has allowed us to obtain an important insight into some fundamental aspects of nanogold catalysis in styrene oxidation. The ultrasmall yet robust Aun(SR)m nanoclusters are particularly promising for studying the mechanistic aspects of nanogold catalysis and for future design of better catalysts with high activity and selectivity for certain chemical processes.
机译:通过使用原子单分散的Au n (SR) m 纳米团簇以及定义明确的苯乙烯氧化催化剂,设计了一种原子级策略来洞悉纳米金催化的起源。 Au n (SR) m 纳米团簇正在发展成为一种新型的金纳米催化剂,以克服常规纳米粒子催化剂的多分散性。 Au n (SR) m 纳米团簇(<2 nm)的独特原子堆积结构和电子性质被合理化,以负责其在苯乙烯氧化中观察到的非凡催化活性。一个有趣的发现是,Au n (SR) m 纳米团簇的量子尺寸效应,而不是更高的比表面积,在金催化的镍的选择性氧化中起主要作用。苯乙烯。例如,发现Au 25 (SR) 18 纳米团簇(≈1nm)在激活O 2 方面特别有效。苯乙烯氧化的关键步骤,因此,超小Au 25 催化剂比大尺寸催化剂具有更高的活性。这种原子级策略使我们对苯乙烯氧化中纳米金催化的一些基本方面有了重要的了解。超小而健壮的Au n (SR) m 纳米团簇对于研究纳米金催化的机理以及未来设计对某些催化剂具有高活性和选择性的更好的催化剂特别有希望。化学过程。

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