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Simple synthesis of a vacancy-rich NiO 2D/3D dendritic self-supported electrode for efficient overall water splitting

机译:简单的合成vacancy-rich NiO 2 d / 3 d树突且高效的电极整体水分裂

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Hydrogen production by water electrolysis is a common strategy for the development of renewable energy. However, meeting the industrial requirement for high efficiency and low cost is difficult to achieve with the existing methods. Herein, a novel and simple synthesis route for a dendritic self-supported electrode consisting of oxygen vacancy-rich NiO embedded within ultrathin 2D/3D nanostructures (NiO-Vo@2D/3D NS@DSE) for overall water splitting is developed for the first time. Based on the simple compound synthesis by jet electrodeposition and in situ acid etching, 2D nanosheets adhering uniformly to 3D nanospheres are successfully obtained on the dendritic self-supported skeleton surface. The experiments and density functional calculations illustrate that this electrode integrates the advantages including numerous active sites, intrinsic catalytic activity, good electrical conductivity, and outstanding reaction kinetic performance. Moreover, NiO-Vo@2D/3D NS@DSE shows excellent oxygen evolution reaction and hydrogen evolution reaction activities in 1 M KOH with overpotentials of 230 and 51 mV at 10 mA cm(-2), respectively. Additionally, the electrode, as an alkali-electrolyzer, displays a potential of 1.51 V at 10 mA cm(-2) with favorable stability that is superior to that of IrO2@nickel foam (NF)//Pt/C@NF (1.62 V). Surprisingly, the cost of NiO-Vo@2D/3D NS@DSE is approximate to 1/120 of the price of noble electrocatalysts with the same mass. This research opens up a new pathway for the design of bifunctional electrocatalysts.
机译:由电解水制氢常见的可再生能源发展战略能量。高效率、低成本的要求与现有的方法难以实现。在此,小说和简单的合成路线树突且电极组成的氧气vacancy-rich NiO嵌入超薄3D / 2D / 3D nanostructures (NiO-Vo@2D NS@DSE) for总体水分裂了已经不是第一次了。合成射流电沉积和原位酸腐蚀、2 d nanosheets坚持一致三维簇上获得成功树突且骨架表面。实验和密度泛函计算说明这电极集成优势包括众多活跃的网站,内在催化活性、良好的电电导率和杰出的反应动力学表演好氧反应和氢进化在1 M KOH进化反应活动230年超电势和51 mV马10厘米(2)分别。alkali-electrolyzer,显示一个潜在的为1.51马V 10厘米(2)有良好的稳定性优越的IrO2@nickel泡沫吗(NF) / / Pt / C@NF (1.62 V)。令人惊讶的是,的成本NiO-Vo@2D / 3 d NS@DSE近似的1/120高贵electrocatalysts同样的价格质量。双官能electrocatalysts的设计。

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