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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >NiFeMo alloy inverse-opals on Ni foam as outstanding bifunctional catalysts for electrolytic water splitting of ultra-low cell voltages at high current densities
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NiFeMo alloy inverse-opals on Ni foam as outstanding bifunctional catalysts for electrolytic water splitting of ultra-low cell voltages at high current densities

机译:Niemo合金在Ni泡沫上的倒置蛋白是优异的双功能催化剂,用于高电流密度的超低电池电压的电解水分裂

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摘要

NiFeMo alloy inverse-opals were created on nickel foam as an extraordinary bifunctional catalyst for alkaline electrolytic water splitting, achieving ultralow overpotentials of 33 and 249 mV for the hydrogen evolution reaction and 198 and 293 mV for the oxygen evolution reaction at current densities of 10 and 500 mA cm(-2), respectively. Ultralow cell voltages of only 1.47 and 1.75 V are enough to deliver current densities of 10 and 500 mA cm(-2), respectively, for overall water splitting, outperforming the benchmark couple, Pt/C and IrO2. The stability of the product is also outstanding, remaining stable after operations at an ultrahigh current density of 500 mA cm(-2) for 50 h. The success of the product catalyst is attributed to the much increased active site number with the construction of inverse-opals on nickel foam and the much enhanced intrinsic activities of the active sites through synergistic effects between the three constituent elements.
机译:Nifemo合金反相对镍泡沫产生的,作为碱性电解水分裂的非凡双官能催化剂,实现33和249mV的超级流量,用于氢进化反应,198和293mV,用于10个和10的氧气进化反应。 分别为500 mA cm(-2)。 仅1.47和1.75V的超低电池电压足以分别为整个水分裂提供10和500 mA cm(-2)的电流密度,优于基准耦合,PT / C和IRO2。 该产品的稳定性也突出,在500mA cm(-2)的超高电流密度下仍然稳定,50小时。 产品催化剂的成功归因于镍泡沫上的反蛋白的倒置的大大增加的活性位点数,通过三个组成元素之间的协同效应来构建活性位点的大大增强的内在活性。

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