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用于高速率和稳定碱性产氢的多孔钛网上聚甲醛稳定的镍量子点的界面工程

Interfacial engineering of POM-stabilized Ni quantum dots on porous titanium mesh for high-rate and stable alkaline hydrogen production.

作者信息

Liao Meihong, Shen Huawei, Lin Xiaorui, Li Zhengji, Zhu Muzi, Liu Kefei, Zhou Shuaishuai, Dai Jingjie, Huang Yichao

机构信息

School of Mechanical and Electronic Engineering, Qingdao Binhai University, Qingdao, Shandong, 266555, P. R. China.

State Key Laboratory of Heavy Oil Processing, School of Materials Science and Engineering, China University of Petroleum, Qingdao, Shandong, 266580, China.

出版信息

Dalton Trans. 2024 Mar 12;53(11):5084-5088. doi: 10.1039/d3dt03917j.

Abstract

The development of low-cost, high-efficiency, and stable electrocatalysts for the alkaline hydrogen evolution reaction (HER) is a key challenge because the alkaline HER kinetics is slowed by an additional water dissociation step. Herein, we report an interfacial engineering strategy for polyoxometalate (POM)-stabilized nickel (Ni) quantum dots decorated on the surface of porous titanium mesh (POMs-Ni@PTM) for high-rate and stable alkaline hydrogen production. Benefiting from the strong interfacial interactions among POMs, Ni atoms, and PTM substrates, as well as unique POM-Ni quantum dot structures, the optimized POMs-Ni@PTM electrocatalyst exhibits a remarkable alkaline HER performance with an overpotential () of 30.1 mV to reach a current density of 10 mA cm, which is much better than those of bare Ni decorated porous titanium mesh (Ni@PTM) ( = 171.1 mV) and POM decorated porous titanium mesh (POMs@PTM) electrocatalysts ( = 493.6 mV), comparable to that of the commercial 20 wt% platinum/carbon (20% Pt/C) electrocatalyst ( = 20 mV). Moreover, the optimized POMs-Ni@PTM electrocatalyst demonstrates excellent stability under continuous alkaline water-splitting at a current density of ∼100 mA cm for 100 h, demonstrating great potential for its practical application.

摘要

开发用于碱性析氢反应(HER)的低成本、高效率和稳定的电催化剂是一项关键挑战,因为碱性HER动力学因额外的水离解步骤而减慢。在此,我们报告了一种界面工程策略,用于在多孔钛网(POMs-Ni@PTM)表面修饰多金属氧酸盐(POM)稳定的镍(Ni)量子点,以实现高速率和稳定的碱性产氢。受益于POMs、Ni原子和PTM底物之间的强界面相互作用,以及独特的POM-Ni量子点结构,优化后的POMs-Ni@PTM电催化剂在达到10 mA cm的电流密度时,表现出显著的碱性HER性能,过电位()为30.1 mV,这比裸镍修饰的多孔钛网(Ni@PTM)( = 171.1 mV)和POM修饰的多孔钛网(POMs@PTM)电催化剂( = 493.6 mV)要好得多,与商业20 wt%铂/碳(20% Pt/C)电催化剂( = 20 mV)相当。此外,优化后的POMs-Ni@PTM电催化剂在约100 mA cm的电流密度下连续碱性水分解100 h时表现出优异的稳定性,显示出其实际应用的巨大潜力。

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