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首页> 外文期刊>Chemical science >In situ K-edge X-ray absorption spectroscopy of the ligand environment of single-site Au/C catalysts during acetylene hydrochlorination
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In situ K-edge X-ray absorption spectroscopy of the ligand environment of single-site Au/C catalysts during acetylene hydrochlorination

机译:在乙炔氢氯化物期间单位Au / C催化剂配体环境的原位k边缘X射线吸收光谱

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The replacement of HgCl _(2) /C with Au/C as a catalyst for acetylene hydrochlorination represents a significant reduction in the environmental impact of this industrial process. Under reaction conditions atomically dispersed cationic Au species are the catalytic active site, representing a large-scale application of heterogeneous single-site catalysts. While the metal nuclearity and oxidation state under operating conditions has been investigated in catalysts prepared from aqua regia and thiosulphate, limited studies have focused on the ligand environment surrounding the metal centre. We now report K-edge soft X-ray absorption spectroscopy of the Cl and S ligand species used to stabilise these isolated cationic Au centres in the harsh reaction conditions. We demonstrate the presence of three distinct Cl species in the materials; inorganic Cl ~(?) , Au–Cl, and C–Cl and how these species evolve during reaction. Direct evidence of Au–S interactions is confirmed in catalysts prepared using thiosulfate precursors which show high stability towards reduction to inactive metal nanoparticles. This stability was clear during gas switching experiments, where exposure to C _(2) H _(2) alone did not dramatically alter the Au electronic structure and consequently did not deactivate the thiosulfate catalyst.
机译:用AU / C的HgCl _(2)/ c作为乙炔氢氯化催化剂的替代为乙炔氢氯化催化剂代表了该工业过程对环境影响的显着降低。在反应条件下,原子上分散的阳离子Au物种是催化活性位点,其代表非均相单位催化剂的大规模施用。虽然在从Aqua Regia和硫代硫酸化制备的催化剂中研究了金属核和氧化状态,但有限的研究专注于金属中心周围的配体环境。现在我们报告了用于稳定这些分离的阳离子Au中心的Cl和S配体种类的K-Edge软X射线吸收光谱在恶劣的反应条件下。我们证明了材料中三种不同的Cl种;无机Cl〜(?),Au-Cl和C-Cl以及这些物种在反应过程中的发展。在使用硫代硫酸硫酸硫酸盐前体制备的催化剂中证实了AU-S相互作用的直接证据,其显示出高稳定性朝向惰性金属纳米颗粒的稳定性。在气体切换实验期间,这种稳定性晴朗,其中单独暴露于C _(2)H _(2)没有显着改变Au电子结构,因此没有去激活硫代硫酸盐催化剂。

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