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通过在三维纳米结构镍阵列上引入亲氧过渡金属来调整结合能力以加速碱性析氢反应

Tailoring Binding Abilities by Incorporating Oxophilic Transition Metals on 3D Nanostructured Ni Arrays for Accelerated Alkaline Hydrogen Evolution Reaction.

作者信息

Kim Jaerim, Jung Hyeonjung, Jung Sang-Mun, Hwang Jinwoo, Kim Dong Yeong, Lee Noho, Kim Kyu-Su, Kwon Hyunah, Kim Yong-Tae, Han Jeong Woo, Kim Jong Kyu

机构信息

Department of Materials Science and Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

出版信息

J Am Chem Soc. 2021 Jan 27;143(3):1399-1408. doi: 10.1021/jacs.0c10661. Epub 2020 Dec 17.

Abstract

Developing efficient and inexpensive electrocatalysts for the hydrogen evolution reaction (HER) in alkaline water electrolysis plays a key role for renewable hydrogen energy technology. The slow reaction kinetics of HER in alkaline solutions, however, has hampered advances in high-performance hydrogen production. Herein, we investigated the trends in HER activity with respect to the binding energies of Ni-based thin film catalysts by incorporating a series of oxophilic transition metal atoms. It was found that the doping of oxophilic atoms enables the modulation of binding abilities of hydrogen and hydroxyl ions on the Ni surfaces, leading to the first establishment of a volcano relation between OH-binding energies and alkaline HER activities. In particular, Cr-incorporated Ni catalyst shows optimized OH-binding as well as H-binding energies for facilitating water dissociation and improving HER activity in alkaline media. Further enhancement of catalytic performance was achieved by introducing an array of three-dimensional (3D) Ni nanohelixes (NHs) that provide abundant surface active sites and effective channels for charge transfer and mass transport. The Cr dopants incorporated into the Ni NHs accelerate the dissociative adsorption process of water, resulting in remarkably enhanced catalytic activities in alkaline medium. Our approach can provide a rational design strategy and experimental methodology toward efficient bimetallic electrocatalysts for alkaline HER using earth-abundant elements.

摘要

开发用于碱性水电解中析氢反应(HER)的高效且廉价的电催化剂对可再生氢能技术起着关键作用。然而,HER在碱性溶液中的缓慢反应动力学阻碍了高性能制氢的进展。在此,我们通过引入一系列亲氧过渡金属原子,研究了镍基薄膜催化剂的HER活性与结合能之间的关系。研究发现,亲氧原子的掺杂能够调节镍表面氢和氢氧根离子的结合能力,从而首次建立了OH结合能与碱性HER活性之间的火山关系。特别地,掺入Cr的Ni催化剂显示出优化的OH结合以及H结合能,有助于促进水的解离并提高碱性介质中的HER活性。通过引入一系列三维(3D)镍纳米螺旋(NHs)进一步提高了催化性能,这些纳米螺旋提供了丰富的表面活性位点以及用于电荷转移和质量传输的有效通道。掺入Ni NHs中的Cr掺杂剂加速了水的解离吸附过程,从而在碱性介质中显著提高了催化活性。我们的方法可为使用储量丰富的元素设计高效的双金属碱性HER电催化剂提供合理的设计策略和实验方法。

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