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PtCu alloy cocatalysts for efficient photocatalytic CO2 reduction into CH4 with 100% selectivity

机译:PTCU合金cocatalysts,可有效的光催化CO2还原为CH4,具有100%选择性

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摘要

In this paper, PtCu alloys with varying Pt/Cu ratios were deposited onto TiO2 nanocrystals to selectively photoreduce CO2 into CH4. The experimental results show that the appropriate Pt/Cu deposition ratio significantly improves CH4 production with 100% selectivity. The PtCu alloy not only effectively promotes the separation/transfer of photogenerated charges, but is also beneficial for the adsorption of CO2 and the formation and activation of intermediates (CO2-, *COOH, *CO, and *CHO). Furthermore, two paths for *CO formation are observed on the surface of PtCu/TiO2, providing sufficient *CO for CH4 generation. Density functional theory calculations show that the synergistic effect of PtCu reduces the activation energy barriers of *CO2 and *CHO and inhibits the desorption of *CO, which simultaneously optimizes the efficiency and selectivity of CO2 reduction. These findings may provide new insights for exploring alloy cocatalysts for regulating the product selectivity of photocatalytic CO2 reduction.
机译:在本文中,将具有不同PT/CU比的PTCU合金沉积到TIO2纳米晶体上,以选择性地将CO2光胶状CO2放入CH4中。实验结果表明,适当的PT/CU沉积比显着提高了CH4的产生,其选择性为100%。 PTCU合金不仅有效地促进了光生电荷的分离/转移,而且对CO2的吸附以及中间体的形成和激活也有益(CO2-, *COOH, *CO和 *CHO)。此外,在PTCU/TIO2的表面上观察到 *CO形成的两个途径,为CH4生成提供了足够的 *CO。密度功能理论计算表明,PTCU的协同作用降低了 *CO2和 *CHO的活化能屏障,并抑制了 *CO的解吸,这同时优化了CO2还原的效率和选择性。这些发现可能提供了用于探索合金cocatalysts的新见解,以调节光催化CO2还原的产品选择性。

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