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Highly selective electroreduction of nitrate to ammonia on a Ru-doped tetragonal Co2P monolayer with low-limiting overpotential

机译:高度的选择性电解还原硝酸盐氨在Ru-doped正方Co2P单层与low-limiting过电压

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摘要

Selective electroreduction of nitrate (NO3-) into ammonia (NH3) can not only eliminate the water pollution crisis but also provide a sustainable way for low-temperature NH3 synthesis. However, today's development of the electrochemical NO3- reduction reaction (NO3RR) is hindered by the lack of eligible electrocatalysts and clear mechanism clarification. Here, the application potentials of the tetragonal transition-metal phosphide monolayers (M2P, M = Co, Ni, Ru and Pd) as NO3RR electrocatalysts for NH3 synthesis have been comprehensively and originally studied using density functional theory. Through comparing the relative energies of various possible products along the NO3RR process, a novel alternating pathway is proposed and it is beneficial to avoid the formation of N-containing by-products. Selecting the d-band center (epsilon(d)) as an effective descriptor, a volcano-type plot of the NO3RR limiting potential is established. The Ni2P monolayer stands near the top of the volcano plot with the limiting potential of -0.37 V, but its selectivity can be greatly reduced when applying the electrode potential. Then, a Ru-doped Co2P monolayer is constructed to modulate the epsilon(d) close to the value at the volcano top and its limiting potential is -0.38 V, exhibiting excellent activity. In addition, the Ru-doping process is thermodynamically favorable and the competing hydrogen evolution reaction is significantly suppressed even with the application of electrode potentials. This work not only provides an atomic understanding of the NO3RR process and but also offers a reliable descriptor to help design promising electrocatalysts.
机译:选择性的电解还原硝酸盐(NO3 -)氨(NH3)不仅可以消除水还提供一个可持续的污染危机为低温氨合成。今天的电化学NO3的发展还原反应(NO3RR)阻碍了缺乏合格的electrocatalysts和清晰澄清机制。正方过渡金属的电位phosphide monolayers (M2P, M = Co、Ni、俄文和Pd)作为NO3RR electrocatalysts对氨合成被全面最初研究使用密度泛函理论。各种可能的相对能量产品沿着NO3RR过程,小说交替途径提出了有利于避免N-containing副产物的形成。选择d带(ε(d))作为中心有效的描述符,volcano-type的情节NO3RR限制潜在的建立。单层站在火山顶部的阴谋限制潜在的-0.37 V,但其选择性应用时可以大大减少电极电位。单层构造调整ε(d)接近火山顶部的值及其限制潜力是-0.38 V,展出优秀的活动。热力学过程是有利的和氢进化反应是竞争显著抑制即使电极的应用潜力。不仅提供了一个原子的理解NO3RR过程,但也提供了一个可靠的描述符来帮助设计有前途electrocatalysts。

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