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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Photo-induced Au-Pd alloying at TiO2 {101} facets enables robust CO2 photocatalytic reduction into hydrocarbon fuels
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Photo-induced Au-Pd alloying at TiO2 {101} facets enables robust CO2 photocatalytic reduction into hydrocarbon fuels

机译:在TiO2 {101}方面的照片诱导的Au-Pd合金化使得强大的CO2光催化还原成烃燃料

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摘要

While photocatalytic conversion of CO2 is a promising approach for the production of renewable fuels, it has always suffered from low yield and poor selectivity, thus the artful design of catalytic sites holds the key to addressing this issue. Herein, we construct Au-Pd alloy catalytic sites on TiO2 {101} facets for robust CO2 conversion to hydrocarbons through a photo-induced alloying strategy. The Au-Pd alloy provides abundant sites for CO2 adsorption and activation, in which the uniformly dispersed Pd atoms could synchronously act as hydrogenation centers. The synergistic effect of Au and Pd, in combination with the photogenerated electron-rich nature of TiO2 {101} facets, is proposed to account for the highly efficient CO2 reduction. Remarkably, the optimal sample has achieved a high selectivity of 85% (71%: CH4, 14%: C2H4 and C2H6) for hydrocarbons with an evolution rate of 14.3 mu mol g(-1) h(-1). This work provides new insights into the design of active sites for CO2 photoreduction, and highlights the significance of surface structure engineering in improving selectivity towards high grade carbon products.
机译:虽然CO2的光催化转化是用于生产可再生燃料的有希望的方法,但它一直遭受低产量和差的选择性,因此催化站点的纵向设计占据了解决这个问题的关键。在此,我们通过光学诱导的合金化策略构建TiO2 {101}突起上的Au-Pd合金催化位,用于通过光诱导的合金化策略对烃转化为烃。 Au-Pd合金提供了丰富的CO 2吸附和活化位点,其中均匀分散的Pd原子可以同步充当氢化中心。 AU和Pd与TiO2 {101}小平面的光发化电子性质组合的协同作用,以考虑高效的二氧化碳还原。值得注意的是,对于烃的烃,最佳样品达到了85%(71%:CH 4,14%:C2H4和C2H6)的高选择性,其进化速率为14.3μmolg(-1)H(-1)。这项工作提供了新的见解,进入CO2光电的有源网站的设计,并突出了表面结构工程在提高高级碳产品的选择方面的重要性。

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