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Core-Shell-Structured NiS2@Ni-B-i Nanoarray for Efficient Water Oxidation at Near-Neutral pH

机译:核心壳结构NIS2 @ NI-B-I纳米阵列,用于近中性pH值的有效水氧化

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The development of high-performance and cost-effective water oxidation catalysts operating under mild conditions is attractive for the conversion of electricity into chemical fuels. In this communication, we report the in situ electrochemical development of a Ni-B-i layer (5-8 nm thick) on a NiS2 nanoarray supported on carbon cloth (i.e., NiS2@Ni-B-i/CC) for efficient water oxidation in 0.1M potassium borate electrolyte at pH 9.2. As a durable 3D catalyst electrode, core-shell-structured NiS2@Ni-B-i/CC shows excellent catalytic activity for water oxidation and approaches a geometrical catalytic current density of 20 mAcm(-2) at an overpotential of 486 mV, with long-term electrochemical stability for at least 24 h with a high turnover frequency of 0.28 mol O-2 s(-1) at an overpotential of 500 mV and nearly 100% Faradic efficiency for oxygen evolution.
机译:在温和条件下运行的高性能和经济高效的水氧化催化剂的开发是对电力转化为化学燃料的吸引力。 在这种通信中,我们向在碳布(即NIS2 @ Ni-Bi / CC)上负载的NI-BI层(5-8nm厚)的原位电化学开发,用于0.1M的有效水氧化 硼酸钾电解质在pH 9.2时。 作为耐用的3D催化剂电极,核心 - 壳结构NIS2 @ Ni-Bi / CC显示出用于水氧化的优异的催化活性,并在486mV的过电位下接近20mcm(-2)的几何催化电流密度,长 - 术语电化学稳定性至少24小时,高速频率为0.28mol O-2 S(-1)的过电位,在500mV和近100%的氧气进化效率近100%。

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