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Free-Standing NiO@C Nanobelt as an Efficient Catalyst for Water Splitting

机译:独立的NIO @ C纳米纳米作为水分裂的有效催化剂

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Cost-effective and high-efficiency electrocatalysts for water splitting are important for the production of renewable energy conversion and storage systems. Herein, a 3D NiO nanobelt electrode was synthesized by direct oxidation of nickel foam using the hydrothermal method. Electrochemical studies reveal that the 3D NiO nanobelt electrode exhibits excellent electro-catalytic activities for both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) with low onset overpotential, small Tafel slope, and very eminent electrochemical stability in the standard aqueous solution of 1.0 M KOH. More importantly, the OER activity of 3D NiO nanobelt can be enhanced by the wrapping of N-doped carbon (NiO@C), which can achieve an overpotential of 500 mV at 100 mA cm(-2), a low Tafel slope of 92 mV dec(-1), and distinguished electrochemical stability. This strategy provides a general route to prepare 3D nanostructured catalyst for water splitting by directly using transition-metal foam as metal source and substrate.
机译:用于水分裂的经济效益和高效电催化剂对于生产可再生能源转换和储存系统是重要的。这里,通过使用水热法直接氧化镍泡沫来合成3D NIO纳米纤维电极。电化学研究表明,3D NIO纳米纤维电极具有出色的电催化活性,用于氢气进化反应(她)和氧气进化反应(OER),具有低发出的过电位,小TAFEL坡度和标准水溶液中的非常卓越的电化学稳定性1.0 m koh。更重要的是,通过缠绕N掺杂碳(NIO @ C),可以增强3D NIO纳米氧化物的OER活性,这可以在100 mA cm(-2)下实现500 mV的过电位,这是92的低Tafel斜率MV DEC(-1),以及可见的电化学稳定性。该策略提供了一种通过直接使用过渡金属泡沫作为金属源和基材来制备水分裂3D纳米结构催化剂的一般途径。

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