Zhao Xiaojie, Chang Ying, Ji Jiang, Jia Jingchun, Jia Meilin
College of Chemistry and Environmental Science, Inner Mongolia Key Laboratory of Green Catalysis and Inner Mongolia Collaborative Innovation Center for Water Environment Safety, Inner Mongolia Normal University Hohhot 010022 China
RSC Adv. 2021 Oct 8;11(53):33179-33185. doi: 10.1039/d1ra06136d.
Design and synthesis of electrocatalysts with high activity and low cost is an important challenge for water splitting. We report a rapid and facile synthetic route to obtain Ir Ni clusters polyol reduction. The Ir Ni clusters show excellent activity for the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) in acidic electrolytes. The optimized IrNi/C clusters exhibit an electrochemical active area of 18.27 mF cm, with the overpotential of OER being 292 mV and HER being 30 mV at 10 mA cm, respectively. In addition, the IrNi/C used as the cathode and anode for the H-type hydrolysis tank only needs 1.597 V cell voltages. The excellent electrocatalytic performance is mainly attributed to the synergistic effect between the metals and the ultra-fine particle size. This study provides a novel strategy that has a broad application for water splitting.
设计和合成具有高活性和低成本的电催化剂是水分解面临的一项重大挑战。我们报道了一种通过多元醇还原快速简便地合成Ir-Ni簇的路线。Ir-Ni簇在酸性电解质中对析氧反应(OER)和析氢反应(HER)表现出优异的活性。优化后的IrNi/C簇的电化学活性面积为18.27 mF cm,在10 mA cm时OER的过电位为292 mV,HER的过电位为30 mV。此外,用作H型水解槽阴极和阳极的IrNi/C仅需1.597 V的电池电压。优异的电催化性能主要归因于金属之间的协同效应和超细粒径。本研究提供了一种具有广泛水分解应用前景的新策略。