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Bifunctionality and Mechanism of Electrodeposited Nickel-Phosphorous Films for Efficient Overall Water Splitting

机译:电沉积镍 - 磷膜的双功能和机理,用于高效的整体水分裂

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摘要

Efficient, stable, and low-cost electrocatalysts are crucial for realizing large-scale water splitting. Herein, we report that electrodeposited nickel-phosphorous (Ni-P) films can act as efficient bifunctional electrocatalysts for overall water splitting. The as-prepared Ni-P films exhibit remarkable catalytic performance for both H-2 and O-2 evolution reactions (HER and OER) in alkaline media, achieving a current density of 10 mAcm(-2) at overpotentials of -93 mV for HER and 344 mV for OER with Tafel slopes of 43 and 49 mVdec(-1), respectively, rivaling the performance of Pt and IrO2. Various techniques were employed to probe the composition and morphology of the Ni-P films prior to and post catalysis, revealing the major composition of the as-prepared and post-HER films as metallic nickel and nickel phosphide, which partially transform to nickel oxides during OER. It was also found that the catalytic rate of OER catalyzed by Ni-P was first order in the activity of the hydroxide anion.
机译:高效,稳定,低成本的电催化剂对于实现大规模的水分裂至关重要。在此,我们报告说,电沉积的镍 - 磷(Ni-P)薄膜可以作为总水分裂的高效双官能电催化剂。制备的Ni-P膜表现出碱性介质H-2和O-2演化反应(HER和OER)的显着催化性能,在-93mV的过电势下实现10mcm(-2)的电流密度她和344 MV用于oer,Tafel斜率为43和49 mvdec(-1),媲美Pt和Iro2的性能。使用各种技术来探讨在催化之前和后催化剂之前的Ni-P膜的组成和形态,揭示了用作金属镍和镍镍和磷化镍的主要组成,部分变换到镍氧化物期间oer。还发现,Ni-P催化的oer的催化速率在氢氧化物阴离子的活性中是首先顺序。

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