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Enhanced Electrochemical Properties and OER Performances by Cu Substitution in NiCo

机译:通过Nico的Cu取代增强电化学性质和OER性能

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摘要

In order to improve the electrochemical performance of the NiCo2O4 material, Ni ions were partially substituted with Cu2+ ions having excellent reducing ability. All of the electrodes were fabricated by growing the Ni1−xCuxCo2O4 electrode spinel-structural active materials onto the graphite felt (GF). Five types of electrodes, NiCo2O4/GF, Ni0.875Cu0.125Co2O4/GF, Ni0.75Cu0.25Co2O4/GF, Ni0.625Cu0.375Co2O4/GF, and Ni0.5Cu0.5Co2O4/GF, were prepared for application to the oxygen evolution reaction (OER). As Cu2+ ions were substituted, the electrochemical performances of the NiCo2O4-based structures were improved, and eventually the OER activities were also greatly increased. In particular, the Ni0.75Cu0.25Co2O4/GF electrode exhibited the best OER activity in a 1.0 M KOH alkaline electrolyte: the cell voltage required to reach a current density of 10 mA cm−2 was only 1.74 V (η = 509 mV), and a low Tafel slope of 119 mV dec−1 was obtained. X-ray photoelectron spectroscopy (XPS) analysis of Ni1−xCuxCo2O4/GF before and after OER revealed that oxygen vacancies are formed around active metals by the insertion of Cu ions, which act as OH-adsorption sites, resulting in high OER activity. Additionally, the stability of the Ni0.75Cu0.25Co2O4/GF electrode was demonstrated through 1000th repeated OER acceleration stability tests with a high faradaic efficiency of 94.3%.
机译:为了改善NicO 2 O 4材料的电化学性能,Ni离子被具有优异的降低能力的Cu 2 +离子被部分取代。通过将Ni1-XCuxco2O4电极尖晶石结构活性材料生长到石墨毡(GF)上,通过将所有电极进行制造。制备5种电极,NicO 2 O 4 / GF,Ni0.875Cu0.125CO2O4 / GF,Ni0.75Cu0.25CO2O4 / GF,Ni0.625Cu0.375CO2O4 / GF和Ni0.5Cu0.5CO2O4 / GF,用于施加氧气进化反应(oer)。随着Cu 2 +离子被取代的,改善了NicO 2 O 4的结构的电化学性能,最终oer活动也大大增加。特别地,Ni0.75Cu0.25CO2O4 / GF电极在1.0M KOH碱性电解质中表现出最佳的OER活性:达到10mA CM-2的电流密度所需的电池电压仅为1.74 V(η= 509mV)并且获得了119mV Dec-1的低Tafel斜率。 X射线光电子能谱(XPS)分析在OER之前和之后的Ni1-Xcuxco2O4 / GF分析显示氧空位通过插入Cu离子围绕活性金属形成,其充当OH-吸附位点,得到高oer活性。另外,通过1000次重复的OER加速稳定性试验证明了Ni0.75Cu0.25CO2O4 / GF电极的稳定性,高法率效率为94.3%。

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