Transition Metal Carbonitride MXenes Anchored with Pt Sub-Nanometer Clusters to Achieve High-Performance Hydrogen Evolution Reaction at All pH Range

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作者
Zhihao Lei [1 ]
Sajjad Ali [2 ]
CI Sathish [1 ]
MuhammadIbrar Ahmed [1 ]
Jiangtao Qu [3 ]
Rongkun Zheng [3 ]
Shibo Xi [4 ]
Xiaojiang Yu [5 ]
MBHBreese [5 ]
Chao Liu [6 ]
Jizhen Zhang [7 ]
Shuai Qi [8 ]
Xinwei Guan [1 ]
Vibin Perumalsamy [1 ]
Mohammed Fawaz [1 ]
JaeHun Yang [1 ]
Mohamed Bououdina [1 ]
Kazunari Domen [9 ]
Ajayan Vinu [1 ]
Liang Qiao [10 ]
Jiabao Yi [11 ]
机构
[1] Global Innovative Center of Advanced Nanomaterials,College of Engineering,Science and Environment,University of Newcastle
[2] Energy,Water,and Environment Lab,College of Humanities and Sciences,Prince Sultan University
[3] School of Physics,University of Sydney
[4] Institute of Chemical and Engineering Sciences,A*STAR
[5] Singapore Synchrotron Light Source,National University of Singapore
[6] Institute for Frontier Materials,Deakin University
[7] Guangdong Provincial Key Laboratory of Natural Rubber Processing,Agricultural Products Processing Research Institute,Chinese Academy of Tropical Agricultural Sciences
[8] College of Chemistry Environmental Engineering,Shenzhen University
[9] Research Initiative for Supra-Materials Interdisciplinary Cluster for Cutting Edge Research,Shinshu University
[10] School of Physics,University of Electronic Science and Technology of China
[11] Department of Chemical Engineering and Interdisciplinary Research Center for Hydrogen Technologies and Carbon Management (IRC-HTCM),King Fahd University of Petroleum and
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摘要
Transition metal carbides,known as MXenes,particularly Ti3C2Tx,have been extensively explored as promising materials for electrochemical reactions.However,transition metal carbonitride MXenes with high nitrogen content for electrochemical reactions are rarely reported.In this work,transition metal carbonitride MXenes incorporated with Pt-based electrocatalysts,ranging from single atoms to sub-nanometer dimensions,are explored for hydrogen evolution reaction (HER).The fabricated Pt clusters/MXene catalyst exhibits superior HER performance compared to the single-atom-incorporated MXene and commercial Pt/C catalyst in both acidic and alkaline electrolytes.The optimized sample shows low overpotentials of 28,65,and 154 mV at a current densities of 10,100,and 500 m A cm-2,a small Tafel slope of 29 m V dec-1,a high mass activity of 1203 mA mgPt-1 and an excellent turnover frequency of 6.1 s-1 in the acidic electrolyte.Density functional theory calculations indicate that this high performance can be attributed to the enhanced active sites,increased surface functional groups,faster charge transfer dynamics,and stronger electronic interaction between Pt and MXene,resulting in optimized hydrogen absorption/desorption toward better HER.This work demonstrates that MXenes with a high content of nitrogen may be promising candidates for various catalytic reactions by incorporating single atoms or clusters.
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页码:533 / 547
页数:15
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