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首页> 外文期刊>Catalysis Today >Computational and experimental study of the second metal effect on the structure and properties of bi-metallic MeMoS-sites in transition metal sulfide catalysts
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Computational and experimental study of the second metal effect on the structure and properties of bi-metallic MeMoS-sites in transition metal sulfide catalysts

机译:第二金属效应对过渡金属硫化物催化剂中双金属膜 - 位点的结构和性能的计算与实验研究

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摘要

Bimetallic (Me)MoS2 (Me = Nb, Fe, Co, Ni) sulfide systems, both modified and non-modified by potassium, were investigated by the DFT method. Geometric and electronic structures of active sites were compared in terms of CO and hydride hydrogen adsorption. Most of the studied metals are electron density acceptors on the S-edge of the crystallite, which inhibits hydride hydrogen adsorption and deactivates the S-edge. The CO adsorption energy on the Me-edge decreased in the order Fe Co Ni. Computational data were verified by experimental tests in syngas conversion. Modification by potassium was shown to hinder sigma-bonding of the adsorbed molecule and to stabilize hydride hydrogen.
机译:通过DFT方法研究了双金属(ME)MOS2(ME = NB,Fe,CO,Ni)硫化物系统,改性和未修饰的钾。 在CO和氢化物氢吸附方面比较了活性位点的几何和电子结构。 大多数研究金属是微晶的S边缘上的电子密度受体,其抑制氢化物氢吸附并使S边缘失活。 订单Fe&gt的Me-Edge上的CO吸附能量下降; co& 你。 通过合成气转换的实验测试验证了计算数据。 显示钾的改性妨碍吸附分子的σ结合并稳定氢化物氢。

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