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首页> 外文期刊>Angewandte Chemie >Subsurface Carbon: A General Feature of Noble Metals
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Subsurface Carbon: A General Feature of Noble Metals

机译:地下碳:贵金属的一般特征

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Carbon moieties on late transition metals are regarded as poisoning agents in heterogeneous catalysis. Recent studies show the promoting catalytic role of subsurface C atoms in Pd surfaces and their existence in Ni and Pt surfaces. Here energetic and kinetic evidence obtained by accurate simulations on surface and nanoparticle models shows that such subsurface C species are a general issue to consider even in coinage noble-metal systems. Subsurface C is the most stable situation in densely packed (111) surfaces of Cu and Ag, with sinking barriers low enough to be overcome at catalytic working temperatures. Low-coordinated sites at nanoparticle edges and corners further stabilize them, even in Au, with negligible subsurface sinking barriers. The malleability of low-coordinated sites is key in the subsurface C accommodation. The incorporation of C species decreases the electron density of the surrounding metal atoms, thus affecting their chemical and catalytic activity.
机译:晚期过渡金属上的碳部分被认为是异质催化中的中毒剂。 最近的研究表明,促进地下C原子在Pd表面中的催化作用及其在Ni和Pt表面中的存在。 在这里,通过精确模拟表面和纳米粒子模型来获得的精力充沛和动力学证据表明,即使在Cinage贵金属系统中也需要这样的地下C物种是一般问题。 地下C是Cu和Ag的密集包装(111)表面中最稳定的情况,其下沉屏障足以在催化的工作温度下克服。 纳米粒子边缘和拐角处的低协调位点进一步稳定它们,即使在AU中,也具有可忽略的地下沉降障碍。 低协调场地的延展性是地下C住宿的关键。 C物种的掺入降低了周围金属原子的电子密度,从而影响其化学和催化活性。

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