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首页> 外文期刊>Journal of Colloid and Interface Science >Self-supported Ni3Se2@NiFe layered double hydroxide bifunctional electrocatalyst for overall water splitting
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Self-supported Ni3Se2@NiFe layered double hydroxide bifunctional electrocatalyst for overall water splitting

机译:自支撑Ni3se2 @ NiFe分层双氢氧化物双功能电催化剂用于整体水分裂

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摘要

Low-cost, highly active and earth-abundant bifunctional electrocatalyst is very important for the largescale hydrogen production by water splitting. In the present work, we report a novel two-step method to fabricate three-dimensional (3D) porous catalyst for water splitting. The Ni3Se2 nanowires are in situ formed on Ni foam (NF) by simple hydrothermal method, subsequently NiFe layered double hydroxid (NiFe-LDH) nanosheets vertically grow on the nanowires to form core-shell structure. The as-formed Ni3Se2@NiFe-LDH/NF catalyst shows 3D porous structure, which can provide large specific surface area and effective substance transfers. The tight bonding between Ni3Se2 nanowires and NiFe-LDH nanosheets ensures good electron transfer. The Ni3Se2@NiFe-LDH/NF catalyst exhibits outstanding electrocatalytic property for both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) in an alkaline medium. The overpotentianls for HER and OER at the current density of 10 mA cm(-2) in 1 M KOH are 68 mV and 222 mV, respectively. For overall water splitting, a small cell voltage of 1.55 V can achieve a current density of 10 mA cm(-2) in 1 M KOH. This work provides a guidance for the rational design and development of heterostructure electrocatalysts for overall water splitting. (c) 2020 Elsevier Inc. All rights reserved.
机译:低成本、高活性、富土的双功能电催化剂对大规模水裂解制氢具有重要意义。在目前的工作中,我们报道了一种新的两步法制备用于水裂解的三维多孔催化剂的方法。通过简单的水热法在泡沫镍(NF)上原位形成Ni3Se2纳米线,随后NiFe层状双氢氧化物(NiFe-LDH)纳米片垂直生长在纳米线上,形成核壳结构。形成的Ni3Se2@NiFe-LDH/NF催化剂呈现三维多孔结构,可提供较大的比表面积和有效的物质转移。Ni3Se2纳米线和NiFe LDH纳米片之间的紧密结合确保了良好的电子转移。这个Ni3Se2@NiFe-LDH/NF催化剂在碱性介质中对析氢反应(HER)和析氧反应(OER)均表现出优异的电催化性能。在1mKOH中,电流密度为10mA cm(-2)时,HER和OER的过电位分别为68mV和222mV。对于整体水分解,1.55 V的小电池电压可以在1 M KOH中实现10 mA cm(-2)的电流密度。这项工作为合理设计和开发用于整体水分解的异质结构电催化剂提供了指导。(c) 2020爱思唯尔公司版权所有。

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