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One-Step In Situ Growth of Iron-Nickel Sulfide Nanosheets on FeNi Alloy Foils: High-Performance and Self-Supported Electrodes for Water Oxidation

机译:铁镍硫化物纳米片在FeNi合金箔上的一步原位生长:用于水氧化的高性能自支撑电极

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Efficient and durable oxygen evolution reaction (OER) catalysts are highly required for the cost-effective generation of clean energy from water splitting. For the first time, an integrated OER electrode based on one-step direct growth of metallic iron-nickel sulfide nanosheets on FeNi alloy foils (denoted as Fe. Ni3S2/FeNi) is reported, and the origin of the enhanced OER activity is uncovered in combination with theoretical and experimental studies. The obtained Fe. Ni3S2/FeNi electrode exhibits highly catalytic activity and long-term stability toward OER in strong alkaline solution, with a low overpotential of 282 mV at 10 mA cm(-2) and a small Tafel slope of 54 mV dec(-1). The excellent activity and satisfactory stability suggest that the as-made electrode provides an attractive alternative to noble metal-based catalysts. Combined with density functional theory calculations, exceptional OER performance of Fe. Ni3S2/FeNi results from a combination of efficient electron transfer properties, more active sites, the suitable O-2 evolution kinetics and energetics benefited from Fe doping. This work not only simply constructs an excellent electrode for water oxidation, but also provides a deep understanding of the underlying nature of the enhanced OER performance, which may serve as a guide to develop highly effective and integrated OER electrodes for water splitting.
机译:高效耐用的析氧反应 (OER) 催化剂对于从水分解中经济高效地产生清洁能源是非常必要的。首次基于金属铁镍硫化物纳米片在FeNi合金箔(表示为Fe.Ni3S2/FeNi)的报道,结合理论和实验研究揭示了OER活性增强的起源。得到的Fe.Ni3S2/FeNi电极在强碱性溶液中表现出较高的催化活性和对OER的长期稳定性,在10 mA cm(-2)时具有282 mV的低过电位和54 mV dec(-1)的小Tafel斜率。优异的活性和令人满意的稳定性表明,该电极为贵金属基催化剂提供了一种有吸引力的替代品。结合密度泛函理论计算,Fe具有优异的OER性能。Ni3S2/FeNi 是高效的电子转移特性、更多的活性位点、合适的 O-2 演化动力学和能量学共同作用的结果。这项工作不仅简单地构建了一种优良的水氧化电极,而且提供了对增强OER性能的潜在性质的深刻理解,可以为开发高效集成的OER水分解电极提供指导。

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