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Competition between metal-catalysed electroreduction of dinitrogen, protons, and nitrogen oxides: a DFT perspective

机译:metal-catalysed之间的竞争电解还原的二氮、质子和氮氧化物:DFT的角度来看

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摘要

Production of green ammonia through electrochemical reduction of N2 is amongst the major challenges of applied catalysis today. A large number of materials have been reported to be capable of catalysing the nitrogen reduction reaction (NRR), but the reliability of these results has been questioned due to the lack of evidence for N2 being the source of produced NH3. In the present study, we use density functional theory (DFT) to demonstrate that the NRR is highly unfavoured versus the hydrogen evolution reaction (HER) on a wide selection of metal catalysts, some of which have been reported to be active for the N2 electroreduction to ammonia previously. Most importantly, we provide a comprehensive analysis of ammonia formation through electroreduction of nitrogen oxides, specifically NO and NO2, which are very hard to avoid as impurities in the NRR experiments, and demonstrate that these processes can effectively compete with the HER. In general, N2 weakly adsorbs on the metal surfaces but NO and NO2 exhibit stronger interactions and a greater stability of the reduced intermediates. These results highlight NO/NO2 reduction as a potential source of ammonia in NRR experiments and might also guide future design of catalysts for the fundamentally and practically important nitrogen oxide reduction reactions.
机译:绿色氨的生产电化学还原N2中今天应用催化的主要挑战。大量的材料已报告能够催化氮还原反应(NRR),但是这些的可靠性结果由于缺乏受到质疑证据N2产生氨的来源。在目前的研究中,我们使用密度泛函理论(DFT)证明NRR高度unfavoured与氢进化反应(她)的金属催化剂,其中一些已报告积极为N2电解还原氨之前。综合分析氨的形成通过电解还原氮氧化物、特别是没有和NO2,很难避免杂质的NRR实验,证明这些过程能有效与她竞争。吸附于金属表面,但没有和二氧化氮表现出更强的交互和更大的中间体的稳定性降低。强调减少NO / NO2作为一个潜在的结果氨在NRR实验和可能的来源也指导未来设计的催化剂从根本上和实践重要的氮氧化还原反应。

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