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Selectively triggering photoelectrons for CO2 to CH4 reduction over SrTiO3 {110} facet with dual-metal sites

机译:选择性触发光电子,在具有双金属位点的 SrTiO3 {110}面上将 CO2 还原为 CH4

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摘要

In this article, the roles of surface-active sites in dominating photoelectron selectivity for CO2 reduction products are well demonstrated over photocatalyst models of SrTiO3 {100} and {110} facets. On the easily exposed {100} facets terminated with Sr-O atoms, photoelectrons are of 8 mol for CH4 and 92 mol for CO generation. The Sr-O-Ti configuration in the {110} facets could enrich the surface charge density due to the lower interface resistance for higher photocatalytic efficiency (1.6 fold). The dual sites of Ti and adjacent Sr atoms are active for strong adsorption and activation of the generated CO* species from primary CO2 reduction on the surface, thus kinetically favoring the activity of photoelectrons (73 mol ) in hydrogenation for CH2* species and hence CH4 product. Inversely, the poor CH4 selectivity is due to difficulty in the subsequent photoelectron reduction reaction by the weak adsorption of CO* at the single-Sr site on the {100} facets, independent of the electron and proton concentration. Our results may offer some illuminating insights into the design of a highly efficient photocatalyst for selective CO2 reduction.
机译:本文在SrTiO3{100}和{110}面的光催化剂模型中很好地证明了表面活性位点在控制CO2还原产物光电子选择性中的作用。在以Sr-O原子终止的易暴露{100}面上,CH4的光电子为8 mol%,CO的产生为92 mol%。{110}面的Sr-O-Ti构型可以提高表面电荷密度,因为界面电阻较低,光催化效率更高(1.6倍)。Ti 和相邻 Sr 原子的双位点具有活性,可强烈吸附和活化表面初级 CO2 还原产生的 CO* 物质,从而在动力学上有利于光电子 (73 mol %) 在氢化反应中对 CH2* 物质和 CH4 产物的活性。相反,CH4选择性差是由于CO*在{100}面上的单Sr位点的弱吸附导致随后的光电子还原反应困难,与电子和质子浓度无关。我们的研究结果可能为设计用于选择性CO2还原的高效光催化剂提供一些启发性的见解。

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