Center for Advancing Electronics Dresden (Cfaed) and Department of Chemistry and Food Chemistry, Technische Universität Dresden, 01062, Dresden, Germany.
Univ Lyon, Ens de Lyon, CNRS, Université Lyon 1, Laboratoire de Chimie, UMR 5182, ,F-69342 Lyon, France.
Adv Mater. 2018 Mar;30(10). doi: 10.1002/adma.201706279. Epub 2018 Jan 19.
Owing to its earth abundance, low kinetic overpotential, and superior stability, NiFe-layered double hydroxide (NiFe-LDH) has emerged as a promising electrocatalyst for catalyzing water splitting, especially oxygen evolution reaction (OER), in alkaline solutions. Unfortunately, as a result of extremely sluggish water dissociation kinetics (Volmer step), hydrogen evolution reaction (HER) activity of the NiFe-LDH is rather poor in alkaline environment. Here a novel strategy is demonstrated for substantially accelerating the hydrogen evolution kinetics of the NiFe-LDH by partially substituting Fe atoms with Ru. In a 1 m KOH solution, the as-synthesized Ru-doped NiFe-LDH nanosheets (NiFeRu-LDH) exhibit excellent HER performance with an overpotential of 29 mV at 10 mA cm , which is much lower than those of noble metal Pt/C and reported electrocatalysts. Both experimental and theoretical results reveal that the introduction of Ru atoms into NiFe-LDH can efficiently reduce energy barrier of the Volmer step, eventually accelerating its HER kinetics. Benefitting from its outstanding HER activity and remained excellent OER activity, the NiFeRu-LDH steadily drives an alkaline electrolyzer with a current density of 10 mA cm at a cell voltage of 1.52 V, which is much lower than the values for Pt/C-Ir/C couple and state-of-the-art overall water-splitting electrocatalysts.
由于其在地壳中的丰富度、低动力学过电势和优异的稳定性,NiFe 层状双氢氧化物(NiFe-LDH)作为一种很有前途的电催化剂,在碱性溶液中能够催化水分解,特别是析氧反应(OER)。然而,由于水离解动力学(Volmer 步骤)极其缓慢,NiFe-LDH 在碱性环境中的析氢反应(HER)活性较差。本文提出了一种通过部分用 Ru 原子取代 Fe 原子来显著加速 NiFe-LDH 析氢动力学的新策略。在 1 m KOH 溶液中,所合成的 Ru 掺杂 NiFe-LDH 纳米片(NiFeRu-LDH)表现出优异的 HER 性能,在 10 mA cm 下的过电势仅为 29 mV,远低于贵金属 Pt/C 和报道的电催化剂。实验和理论结果均表明,Ru 原子的引入可以有效地降低 Volmer 步骤的能垒,从而最终加速其 HER 动力学。得益于其出色的 HER 活性和保留的优异 OER 活性,NiFeRu-LDH 可稳定地驱动碱性电解槽,在 1.52 V 的电池电压下电流密度为 10 mA cm ,远低于 Pt/C-Ir/C 对和最先进的整体水分解电催化剂的值。