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花状镍磷纳米片组装的微球具有暴露的高活性(001)晶面:高效析氢反应电催化剂。

Flower-Like Nickel Phosphide Microballs Assembled by Nanoplates with Exposed High-Energy (0 0 1) Facets: Efficient Electrocatalyst for the Hydrogen Evolution Reaction.

机构信息

Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education, Heilongjiang University, Harbin, 150080, P. R. China.

Key Laboratory for Photonic and Electric Bandgap Materials, Ministry of Education, Harbin Normal University, Harbin, 150025, P. R. China.

出版信息

ChemSusChem. 2017 Dec 22;10(24):4899-4908. doi: 10.1002/cssc.201701647. Epub 2017 Nov 30.

Abstract

The fabrication of low-cost and earth-abundant electrocatalysts for the hydrogen evolution reaction (HER) over a broad pH range is attractive. In this work, a facile precursor route is developed to synthesize flower-like nickel phosphide microballs with a diameter of approximately 12 μm. With a controlled phosphorization temperature, flower-like nickel phosphide microballs with different crystalline structures (Ni P and Ni P) were obtained easily. Flower-like Ni P microballs possessed two advantageous features for enhanced HER: fast vectorial electron transfer path along the building block nanoplates and enhanced inherent catalytic activity of each active site for high-energy (0 0 1) facets. The flower-like Ni P microballs electrocatalyst thus displayed excellent activity for the HER with a low overpotential (η) of 35.4 mV to reach current densities of 10 mA cm and a small Tafel slope of 48 mV dec in acid solution. In addition, it showed excellent activity in 1 m KOH with η=47 mV at 10 mA cm . DFT studies indicated that the free energy of hydrogen adsorbed on the Ni site of Ni P was 0.152 eV, which is smaller than that of the Ni site of Ni P (0.182 eV). Therefore, flower-like Ni P microballs exhibited better HER activity than Ni P, which is consistent with our HER data. This hierarchical structure with exposed high-energy (0 0 1) facets paves the way to design and synthesize low-cost, high-performance catalysts for the HER.

摘要

在较宽的 pH 范围内,制备低成本且储量丰富的电催化剂用于析氢反应(HER)具有吸引力。在这项工作中,开发了一种简便的前驱体路线,用于合成具有约 12μm 直径的花状磷化镍微球。通过控制磷化温度,很容易获得具有不同晶体结构(NiP 和 Ni5P4)的花状磷化镍微球。花状 NiP 微球具有两个增强 HER 的有利特征:沿着构建块纳米板的快速矢量电子转移路径和每个活性位点的固有催化活性的增强,以适应高能(001)晶面。因此,花状 NiP 微球电催化剂在酸性溶液中具有出色的 HER 活性,达到 10 mA cm-2 的电流密度时过电位(η)仅为 35.4 mV,塔菲尔斜率较小,为 48 mV dec-1。此外,它在 1 m KOH 中也表现出出色的活性,在 10 mA cm-2时 η=47 mV。DFT 研究表明,氢在 NiP 的 Ni 位上的吸附自由能为 0.152 eV,小于 Ni5P4 的 Ni 位(0.182 eV)。因此,花状 NiP 微球表现出比 Ni5P4 更好的 HER 活性,这与我们的 HER 数据一致。这种具有暴露高能(001)晶面的分级结构为设计和合成低成本、高性能的 HER 催化剂铺平了道路。

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