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Graphdiyne-supported single-cluster electrocatalysts for highly efficient carbon dioxide reduction reaction

机译:Graphdiyne-supported单个集群electrocatalysts高效碳二氧化碳还原反应

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The electrochemical CO2 reduction reaction (CO2RR) has become a promising technology to resolve globally accelerating CO2 emissions and produce chemical fuels. In this work, the electrocatalytic performance of transition metal (TM = Cu, Cr, Mn, Co, Ni, Mo, Pt, Rh, Ru and V) triatomic clusters embedded in a graphdiyne (GDY) monolayer (TM3@GDY) for CO2RR is investigated by density functional theory (DFT) calculations. The results indicate that Cr-3@GDY possesses the best catalytic performance with a remarkably low rate-limiting step of 0.39 eV toward the CO2 product, and it can also effectively suppress the hydrogen evolution reaction (HER) during the entire CO2RR process. Studies on the rate-limiting steps (CHO* + H+ + e(-) -> CHOH) of Cr-n@GDY (n = 1-4) structures demonstrate that the high catalytic performance is attributed to the strong synergistic reaction of three Cr atoms interacting with the C atom for the Cr-3@GDY structure. The strong synergistic reaction gives rise to the weakest interaction between O-Cr atoms, which leads to the strongest interaction between O-H atoms and makes the hydrogenation process easier for the Cr-3@GDY structure. Furthermore, ab initio molecular dynamics simulations (AIMD) at 500 K reveal the high thermodynamic stability of the Cr-3@GDY structure. These studies may provide a new approach for designing highly efficient electrocatalysts for the CO2RR under ambient conditions.
机译:二氧化碳电化学还原反应(CO2RR)已成为一种有希望的技术来解决吗在全球范围内加速二氧化碳排放和生产化学燃料。electrocatalytic过渡金属的性能(TM = Cu、Cr、Mn、Co、Ni、莫Pt Rh,俄文和V)三原子簇嵌入graphdiyne (GDY)单层(TM3@GDY) CO2RR调查密度泛函理论(DFT)计算。结果表明,Cr-3@GDY拥有最好的催化性能非常低向二氧化碳病原反应步骤0.39 eV产品,它还能有效地抑制析氢反应(她的)整个CO2RR过程。病原反应步骤(曹* e + H + + (-) - > CHOH)Cr-n@GDY证明(n = 1 - 4)结构归因于高催化性能三个Cr的强大的协同反应原子Cr-3@GDY C原子相互作用结构。O-Cr最弱的相互作用原子,从而导致最强的交互地原子之间,使加氢过程更容易Cr-3@GDY结构。此外,从头开始分子动力学模拟(AIMD) 500 K揭示高Cr-3@GDY的热力学稳定性结构。设计高效的方法electrocatalysts CO2RR环境下条件。

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