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3D self-supported Ni(PO3)(2)-MoO3 nanorods anchored on nickel foam for highly efficient overall water splitting

机译:3 d且倪(警察丙)(2)-MoO3纳米棒固定在泡沫镍的高效整体水分裂

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摘要

Electrolyzing water as a sustainable energy source is a promising and appealing method to resolve the environmental crisis. Developing efficient and stable bifunctional electrocatalysts for the hydrogen evolution reaction (HER) and the oxygen evolution reaction (OER) is crucial and challenging in the overall water splitting process. Herein, we report the synthesis of Ni(PO3)(2)-MoO3 nanorods anchored on nickel foam (Ni(PO3)(2)-MoO3/NF) within a two-step strategy and their application as a bifunctional water splitting electrocatalyst. The results show that the optimal Ni(PO3)(2)-MoO3/NF electrodes exhibit superior catalytic activity with robust durability and ultralow overpotentials of 86 mV for HER and 234 mV for OER to achieve 10 mA cm(-2) ((10)) in alkaline solution. The favorable performance of the obtained catalyst is attributed mainly to the synergetic effect between Ni(PO3)(2) and MoO3, as well as the self-supporting porous conductive substrate. As a result, the integrated Ni(PO3)(2)-MoO3/NF electrodes deliver (10) at a small potential of 1.47 V for overall water splitting, highlighting a promising application as a bifunctional electrocatalyst.
机译:电解水作为可持续能源来源是一种很有前途的和吸引人的方法来解决环境危机。和稳定的双官能electrocatalysts析氢反应(她)和氧气进化反应(OER),是至关重要的挑战在整个水分裂的过程。Ni(警察丙)(2)-MoO3纳米棒固定在泡沫镍(倪(警察丙)(2)-MoO3 / NF)在一个两步策略和他们的应用程序作为双功能水分裂electrocatalyst。最优倪(警察丙)(2)-MoO3 / NF电极展览优越的催化活性与健壮耐用性和超低86 mV的过电压为她和234 mV OER达到10马厘米(2)((10))在碱性溶液。得到的催化剂的性能主要归因于协同作用的效果倪(警察丙)(2)和MoO3之间,以及自营多孔导电衬底。因此,集成倪(警察丙)(2)-MoO3 / NF电极(10)在一个小的潜力1.47 V总体水分裂,高亮显示一个有前途的应用程序作为双功能electrocatalyst。

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