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锌和氟离子双调制的NiCoP纳米棱柱阵列电催化剂用于高效水分解

Zinc and fluorine ions dual-modulated NiCoP nanoprism array electrocatalysts for efficient water splitting.

作者信息

Zhu Jianjun, Zheng Xinyu, Liu Chenchen, Lu Yikai, Liu Yu, Li Di, Jiang Deli

机构信息

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

Institute for Energy Research, Jiangsu University, Zhenjiang 212013, China.

出版信息

J Colloid Interface Sci. 2023 Jan 15;630(Pt B):559-569. doi: 10.1016/j.jcis.2022.10.136. Epub 2022 Nov 1.

Abstract

Designing efficient, stable, and low-cost bifunctional catalysts for overall water splitting is significant but challenging. In this work, Zn and F ions co-doped NiCoP nanoprism arrays grown directly on nickel foam (Zn/F-NiCoP/NF) was synthesized via hydrothermal method followed by phosphorization treatment. The resultant Zn/F-NiCoP/NF exhibits high electrocatalytic activity towards hydrogen evolution reaction (HER, η = 59 mV) and oxygen evolution reaction (OER, η = 285 mV). An alkaline electrolyzer using Zn/F-NiCoP/NF as both cathode and anode requires a low cell voltage of 1.568 V at a current density of 10 mA cm with a high long-term stability of up to 40 h, which outperforms many reported Ni,Co-based catalysts. Density functional theory (DFT) calculations proof that simultaneous doping of NiCoP with Zn and F ions provides flexibility to regulate the electronic configuration and downshifts the transition metal d-band center, thereby optimizing adsorption energy between reactants and intermediates, which enhances the HER and OER catalytic activities. This work highlights that cation-anion co-doping strategy is an effective way to develop highly active transition metal phosphides electrocatalyst for water splitting.

摘要

设计用于全水解的高效、稳定且低成本的双功能催化剂具有重要意义,但极具挑战性。在本工作中,通过水热法接着进行磷化处理,合成了直接生长在泡沫镍上的锌和氟离子共掺杂的NiCoP纳米棱柱阵列(Zn/F-NiCoP/NF)。所得的Zn/F-NiCoP/NF对析氢反应(HER,η = 59 mV)和析氧反应(OER,η = 285 mV)表现出高电催化活性。使用Zn/F-NiCoP/NF作为阴极和阳极的碱性电解槽在电流密度为10 mA cm时需要低至1.568 V的电池电压,并且具有高达40 h的高长期稳定性,这优于许多已报道的镍钴基催化剂。密度泛函理论(DFT)计算证明,NiCoP同时掺杂锌和氟离子可灵活调节电子构型并使过渡金属d带中心下移,从而优化反应物与中间体之间的吸附能,进而增强HER和OER催化活性。本工作强调阳离子-阴离子共掺杂策略是开发用于水分解的高活性过渡金属磷化物电催化剂的有效方法。

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