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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Advanced Cu3Sn and Selenized Cu3Sn@Cu Foam as Electrocatalysts for Water Oxidation under Alkaline and Near -Neutral Conditions
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Advanced Cu3Sn and Selenized Cu3Sn@Cu Foam as Electrocatalysts for Water Oxidation under Alkaline and Near -Neutral Conditions

机译:先进的Cu3Sn和硒化Cu3Sn @ Cu泡沫作为碱性和近日条件下水氧化的电催化剂

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摘要

Water electrolysis is a field growing rapidly to replace the limited fossil fuels for harvesting energy in future. In searching of non-noble and advanced electrocatalysts for the oxygen evolution reaction (OER), here we highlight a new and advanced catalyst, selenized Cu3Sn@Cu foam, with overwhelming activity for OER under both alkaline (1 M KOH) and near-neutral (1 M NaHCO3) conditions. The catalysts were prepared by a double hydrothermal treatment where Cu3Sn is first formed which further underwent for second hydrothermal condition for selenization. For comparison, Cu7Se4@Cu foam was prepared by a hydrothermal treatment under the same protocol. The as-formed Cu3Sn@Cu foam, selenized Cu3Sn@Cu foam, and Cu7Se4@Cu foam were utilized as electrocatalysts and showed their potentiality in terms of activity and stability. In 1 M KOH, for attaining the benchmarking current density of 50 mA cm-2, selenized Cu3Sn@Cu foam required a low overpotential of 384 mV and increased charge transfer kinetics with a lower Tafel slope value of 177 mV/dec comparing Cu3Sn@Cu foam, Cu7Se4@Cu foam, and pristine Cu foam. Furthermore, potentiostatic analysis (PSTAT) was carried out for 40 h for selenized Cu3Sn@Cu foam and with minimum degradation in activity assured the long-term application for hydrogen generation. Similarly, under neutral condition selenized Cu3Sn@Cu foam also delivered better activity trend at higher overpotentials in comparison with others. Therefore, the assistance of both Sn and Se in Cu foam ensured better activity and stability in comparison with only selenized Cu foam. With these possible outcomes, it can also be combined with other active, non-noble elements for enriched hydrogen generation in future.
机译:水电解是一种迅速生长的领域,以更换有限的化石燃料,以便将来收获能量。在寻找氧气进化反应(OER)的非高贵和先进的电催化剂时,我们突出了一种新的和先进的催化剂硒化CU3SN @ Cu泡沫,在碱性(1M KOH)和近中性下的oer的压倒性活性(1米NaHCO3)条件。通过双水热处理制备催化剂,其中首先形成Cu3Sn,其进一步探讨了第二水热条件进行硒化。为了比较,通过在相同方案下通过水热处理制备Cu7Se4 @ Cu泡沫。作为电催化剂,用作硒化Cu3Sn @ Cu泡沫,Selenized Cu3SN @ Cu泡沫和Cu7se4 @ Cu泡沫,并在活性和稳定性方面显示出潜力。在1 M KOH中,为了获得50mA CM-2的基准测试电流密度,硒化CU3SN @ Cu泡沫需要384 mV的低过电位,并增加电荷转移动力学,较低的Tafel斜率值为177 MV / DEC比较CU3SN @ Cu泡沫,Cu7se4 @ Cu泡沫和原始Cu泡沫。此外,对硒化Cu3SN @ Cu泡沫进行40小时,对溶剂泡沫进行40小时,并在活性中降解最小的降解,确保了对氢产生的长期施用。类似地,在中性条件下硒化Cu3Sn @ Cu泡沫在与他人相比,Cu泡沫也在更高的过电位下提供更好的活性趋势。因此,与仅硒化Cu泡沫相比,Sn和Se在Cu泡沫中的辅助确保了更好的活性和稳定性。利用这些可能的结果,它也可以与未来富集的氢生成的其他活性的非惰性元素组合。

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