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剥离的 Ni-Fe 氢氧化物纳米片和缺陷石墨烯的杂化结构耦合作为全水解的双功能电催化剂。

A Heterostructure Coupling of Exfoliated Ni-Fe Hydroxide Nanosheet and Defective Graphene as a Bifunctional Electrocatalyst for Overall Water Splitting.

机构信息

Queensland Micro- and Nanotechnology Centre, Griffith University, Nathan Campus, Queensland, 4111, Australia.

School of Natural Sciences, Griffith University, Queensland, 4111, Australia.

出版信息

Adv Mater. 2017 May;29(17). doi: 10.1002/adma.201700017. Epub 2017 Mar 3.

Abstract

Herein, the authors demonstrate a heterostructured NiFe LDH-NS@DG10 hybrid catalyst by coupling of exfoliated Ni-Fe layered double hydroxide (LDH) nanosheet (NS) and defective graphene (DG). The catalyst has exhibited extremely high electrocatalytic activity for oxygen evolution reaction (OER) in an alkaline solution with an overpotential of 0.21 V at a current density of 10 mA cm , which is comparable to the current record (≈0.20 V in Fe-Co-Ni metal-oxide-film system) and superior to all other non-noble metal catalysts. Also, it possesses outstanding kinetics (Tafel slope of 52 mV dec ) for the reaction. Interestingly, the NiFe LDH-NS@DG10 hybrid has also exhibited the high hydrogen evolution reaction (HER) performance in an alkaline solution (with an overpotential of 115 mV by 2 mg cm loading at a current density of 20 mA cm ) in contrast to barely HER activity for NiFe LDH-NS itself. As a result, the bifunctional catalyst the authors developed can achieve a current density of 20 mA cm by a voltage of only 1.5 V, which is also a record for the overall water splitting. Density functional theory calculation reveals that the synergetic effects of highly exposed 3d transition metal atoms and carbon defects are essential for the bifunctional activity for OER and HER.

摘要

在这里,作者通过剥离的 Ni-Fe 层状双氢氧化物 (LDH) 纳米片 (NS) 和缺陷石墨烯 (DG) 的耦合,展示了一种异质结构的 NiFe LDH-NS@DG10 混合催化剂。该催化剂在碱性溶液中表现出极高的析氧反应 (OER) 电催化活性,在 10 mA cm 的电流密度下的过电位为 0.21 V,可与当前记录 (≈0.20 V 在 Fe-Co-Ni 金属氧化物薄膜系统) 相媲美,优于所有其他非贵金属催化剂。此外,它还具有出色的反应动力学 (Tafel 斜率为 52 mV dec)。有趣的是,与 NiFe LDH-NS 本身几乎没有析氢反应 (HER) 活性相比,NiFe LDH-NS@DG10 混合催化剂在碱性溶液中也表现出高析氢反应 (HER) 性能 (在 20 mA cm 的电流密度下,通过 2 mg cm 的负载,过电位为 115 mV)。因此,作者所开发的双功能催化剂可以在仅 1.5 V 的电压下实现 20 mA cm 的电流密度,这也是整体水分解的记录。密度泛函理论计算表明,高度暴露的 3d 过渡金属原子和碳缺陷的协同效应对于 OER 和 HER 的双功能活性是必不可少的。

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