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Transition Metal‐Promoted V2CO2 (MXenes): A New and Highly Active Catalyst for Hydrogen Evolution Reaction

机译:过渡金属促进的V2CO2(MXenes):一种用于氢析出反应的新型高活性催化剂

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摘要

Developing alternatives to precious Pt for hydrogen production from water splitting is central to the area of renewable energy. This work predicts extremely high catalytic activity of transition metal (Fe, Co, and Ni) promoted two‐dimensional MXenes, fully oxidized vanadium carbides (V2CO2), for hydrogen evolution reaction (HER). The first‐principle calculations show that the introduction of transition metal can greatly weaken the strong binding between hydrogen and oxygen and engineer the hydrogen adsorption free energy to the optimal value ≈0 eV by choosing the suitable type and coverage of the promoters as well as the active sites. Strain engineering on the performance of transition metal promoted V2CO2 further reveals that the excellent HER activities can maintain well while those poor ones can be modulated to be highly active. This study provides new possibilities for cost‐effective alternatives to Pt in HER and for the application of 2D MXenes.
机译:开发用于水分解制氢的珍贵Pt替代品对可再生能源领域至关重要。这项工作预测过渡金属(Fe,Co和Ni)促进的二维MXene(完全氧化的碳化钒(V2CO2))对氢气析出反应(HER)的极高催化活性。第一性原理计算表明,过渡金属的引入可通过选择合适的促进剂类型和覆盖范围以及促进剂的类型来极大地削弱氢与氧之间的强结合力,并将氢吸附自由能设计为最佳值≈0eV。活动站点。过渡金属促进的V2CO2性能的应变工程进一步表明,优异的HER活性可以保持良好,而那些较差的HER可被调节为高活性。这项研究为经济高效的HER中Pt替代品和2D MXene的应用提供了新的可能性。

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