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Polymeric tungsten carbide nanoclusters as potential non-noble metal catalysts for CO oxidation

机译:聚合碳化钨纳米团簇作为CO氧化的潜在非贵金属催化剂

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The discovery of tungsten carbide (WC) as an analog of the noble metal Pt atom is of great significance toward designing novel highly-active catalysts from the viewpoint of the superatom concept. The potential of such a superatom to serve as building blocks of replacement catalysts for Pt has been evaluated in this work. The electronic properties, adsorption behaviors, and catalytic mechanisms towards the CO oxidation of (WC)n and Ptn (n = 1, 2, 4, and 6) were compared. Counterintuitively, these studied (WC)n clusters exhibit quite different electronic properties and adsorption behaviours from the corresponding Ptn species. For instance, (WC)n preferentially adsorbs O2, whereas Ptn tends to first combine with CO. Even so, it is interesting to find that the catalytic performances of (WC)n are always superior to the corresponding Ptn, and especially, the largest (WC)6 cluster exhibits the best catalytic ability towards CO oxidation. Therefore, assembling superatomic WC clusters into larger polymeric clusters can be regarded as a novel strategy to develop efficient superatom-assembled catalysts for CO oxidation. It is highly expected to see the realization of non-noble metal catalysts for various reactions in the near future experiments by using superatoms as building blocks.
机译:发现碳化钨(WC)作为一个模拟的贵金属Pt原子是伟大的意义对设计新型高活性催化剂从superatom的观点的概念。作为构建模块的更换催化剂为泰党的一直在评估这项工作。电子性质、吸附行为和对CO氧化催化机制(WC) n和Ptn (n = 1, 2, 4, 6)进行了比较。相反,这些研究(WC) n集群表现出完全不同的电子属性和从相应的Ptn吸附行为物种。吸附O2,而Ptn往往首先结合有限公司。即便如此,有趣的是发现的催化性能(WC) n总是优于相应的Ptn,特别是,最大的集群(WC) 6展品最好的对CO氧化催化能力。因此,装配superatomic WC集群成更大的聚合物集群可以被视为一项新策略来开发效率superatom-assembled催化剂对CO氧化。它是高度期望看到的实现非贵金属催化剂对各种反应在不久的将来实验使用superatoms作为构建块。

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