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Ni nanotube array-based electrodes by electrochemical alloying and de-alloying for efficient water splitting

机译:镍纳米管制成的电极电化学合金和de-alloying高效水分裂

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The design of cost-efficient earth-abundant catalysts with superior performance for the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) is extremely important for future renewable energy production. Herein, we report a facile strategy for constructing Ni nanotube arrays (NTAs) on a Ni foam (NF) substrate through cathodic deposition of NiCu alloy followed by anodic stripping of metallic Cu. Based on Ni NTAs, the as-prepared NiSe2 NTA electrode by NiSe2 electrodeposition and the NiFeOx NTA electrode by dipping in Fe3+ solution exhibit excellent HER and OER performance in alkaline conditions. In these systems, Ni NTAs act as a binder-free multifunctional inner layer to support the electrocatalysts, offer a large specific surface area and serve as a fast electron transport pathway. Moreover, an alkaline electrolyzer has been constructed using NiFeOx NTAs as the anode and NiSe2 NTAs as the cathode, which only demands a cell voltage of 1.78 V to deliver a water-splitting current density of 500 mA cm(-2), and demonstrates remarkable stability during long-term electrolysis. This work provides an attractive method for the design and fabrication of nanotube array-based catalyst electrodes for highly efficient water-splitting.
机译:有成本效益的地球上充足的设计催化剂的性能优越析氢反应(她)和氧气进化反应(OER)是极其重要的未来可再生能源的生产。我们报告一个简单的策略构建倪纳米管阵列(NTAs)镍泡沫(NF)通过阴极沉积的NiCu衬底合金阳极剥离金属紧随其后Cu。由NiSe2电极电沉积和NiFeOx NTA电极浸在Fe3 +解决方案表现出优秀的她和OER的表现碱性条件。作为binder-free多功能内层支持electrocatalysts,提供一个大比表面积和作为一个快电子传递途径。电解槽使用NiFeOx建造NTAs阳极和NiSe2 NTAs作为阴极,它只需要一个电池电压1.78 V的吗提供水分解电流密度为500马厘米(2),展示了非凡的稳定在长期的电解。一个有吸引力的设计和方法制备的纳米管制成的催化剂电极的高效水分解。

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