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镍钴层状双氢氧化物衍生的硼掺杂CoP/NiP空心纳米棱柱作为析氢反应的高效电催化剂

NiCo-Layered Double Hydroxide-Derived B-Doped CoP/NiP Hollow Nanoprisms as High-Efficiency Electrocatalysts for Hydrogen Evolution Reaction.

作者信息

Liu Mengying, He Qian, Huang Shaowei, Zou Wenhong, Cong Jing, Xiao Xiaoqin, Li Pan, Cai Jingyu, Hou Linxi

机构信息

College of Chemical Engineering, Fuzhou University, Xueyuan Road No. 2, Fuzhou 350116, China.

Fujian Key Laboratory of Advanced Manufacturing Technology of Specialty Chemicals, Fuzhou University, Fuzhou 350116, China.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 3;13(8):9932-9941. doi: 10.1021/acsami.0c20294. Epub 2021 Feb 17.

Abstract

Rational design and controllable synthesis of multiple metal components according to chemical composition and morphology are essential for obtaining desirable electrochemical performance for efficient hydrogen production because of the morphology and synergistic effects of different components. Herein, we report an approach to facilely fabricate bimetal compounds with a well-defined hollow nanoprism structure using a self-templated strategy to synthesize novel hierarchical NiCo-layered double hydroxide (NiCo-LDH) nanosheets as precursors followed by in situ phosphorization. Among the as-synthesized products of different mole ratios of Ni/Co, the NiCo-B-P nanoprisms that integrate the advantages of a hollow structure, an optimal Ni-Co synergistic effect, and a unique B-doped CoP/NiP bimetallic phosphide derived from NiCo-LDH nanosheets exhibit excellent hydrogen evolution reaction (HER) activity in an alkaline solution at 10 mA cm with the lowest overpotential of 78 mV and long-term stability. This study may offer an appropriate structure and compositional design of bimetallic alkaline HER catalysts.

摘要

根据化学成分和形态对多种金属组分进行合理设计和可控合成,对于获得高效产氢所需的理想电化学性能至关重要,这是由于不同组分的形态和协同效应。在此,我们报道了一种方法,通过自模板策略轻松制备具有明确空心纳米棱柱结构的双金属化合物,以合成新型分级镍钴层状双氢氧化物(NiCo-LDH)纳米片作为前驱体,随后进行原位磷化。在不同镍/钴摩尔比的合成产物中,整合了空心结构优势、最佳镍钴协同效应以及源自NiCo-LDH纳米片的独特硼掺杂CoP/NiP双金属磷化物的NiCo-B-P纳米棱柱在碱性溶液中,在10 mA cm下表现出优异的析氢反应(HER)活性,过电位最低为78 mV,且具有长期稳定性。该研究可能为双金属碱性HER催化剂提供合适的结构和组成设计。

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