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Efficient Water Splitting Using a Simple Ni/N/C Paper Electrocatalyst

机译:使用简单的Ni / N / C纸电催化剂进行有效的水分解

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摘要

An efficient water splitting electrocatalyst is presented. Cheap and sustainable cellulose filter paper, infiltrated with nickel acetate as the nickel source, and phenanthroline as a ligand and nitrogen source are carbonized together. Nitrogen functionalities turn out to be crucial coordination sites for the supported Ni/NiO(OH) particles. This simple and scalable one step procedure leads to powders, but also to complete membranes made of ≈10 wt% Ni, supported on nitrogen functionalized carbon. The non-noble catalyst shows a low onset potential (330 mV vs reversible hydrogen electrode), high current density (e.g., j > 25 mA cm−­2 at η = 430 mV), excellent kinetics (Tafel slope of 44 mV dec−1), and a very favorable stability (<5% decay after 10 h electrolysis) in the oxygen evolution. The performance is similar or even better compared to state-of-the-art noble metal catalysts (e.g., IrO2, Ir/C, Ru/C, and Pt/C). Because of the simple, cheap, and scalable preparation procedure the catalyst is highly promising for practical low price/tech applications. Interestingly, the system is also active in the hydrogen evolution reaction, leading to a promising bifunctional catalyst. The benchmark characteristics are η10 = 390 mV for oxygen evolution and η10 = 190 mV for hydrogen evolution, that is, an overall efficiency of 68% at 10 mA current density.
机译:提出了一种高效的水分解电催化剂。廉价且可持续的纤维素滤纸(碳化纤维素浸透了醋酸镍作为镍源,菲咯啉作为配体和氮源)被碳化。氮官能度对于负载的Ni / NiO(OH)颗粒而言是至关重要的配位点。这种简单且可扩展的一步操作程序不仅可以制得粉末,而且还可以制得由≈10wt%Ni制成的完整膜,并负载在氮官能化碳上。非贵重催化剂显示出低的起始电势(相对于可逆氢电极为330 mV),高电流密度(例如,η= 430 mV时j> 25 mA cm-2),出色的动力学(Tafel斜率为44 mV dec-1) )和氧气释放方面非常有利的稳定性(电解10小时后衰减<5%)。与最先进的贵金属催化剂(例如IrO2,Ir / C,Ru / C和Pt / C)相比,性能相似甚至更好。由于简单,便宜和可扩展的制备方法,该催化剂在实际的低价格/技术应用中非常有前途。有趣的是,该系统在析氢反应中也具有活性,从而导致了有希望的双功能催化剂。对于氧气析出,基准特性为η10= 390 mV,对于氢气析出为η10= 190 mV,即在10 mA电流密度下的总效率为68%。

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