Interfacial engineering of 3D hollow CoSe2@ultrathin MoSe2 core@shell heterostructure for efficient pH-universal hydrogen evolution reaction

被引:0
作者
Lili Zhang
Yuanting Lei
Danni Zhou
Chengli Xiong
Zhuoli Jiang
Xinyuan Li
Huishan Shang
Yafei Zhao
Wenxing Chen
Bing Zhang
机构
[1] Zhengzhou University,School of Chemical Engineering
[2] Beijing Institute of Technology,Energy & Catalysis Center, School of Materials Science and Engineering
[3] Tsinghua University,Department of Chemistry
来源
Nano Research | 2022年 / 15卷
关键词
transition metal selenides; hydrogen evolution reaction; core@shell heterostructure; pH-universal;
D O I
暂无
中图分类号
学科分类号
摘要
Rational design and construction of low-cost and highly efficient electrocatalysts for hydrogen evolution reaction (HER) is meaningful but challenging. Herein, a robust three dimensional (3D) hollow CoSe2@ultrathin MoSe2 core@shell heterostructure (CoSe2@MoSe2) is proposed as an efficient HER electrocatalyst through interfacial engineering. Benefitting from the abundant heterogeneous interfaces on CoSe2@MoSe2, the exposed edge active sites are maximized and the charge transfer at the hetero-interfaces is accelerated, thus facilitating the HER kinetics. It exhibits remarkable performance in pH-universal conditions. Notably, it only needs an overpotential (η10) of 108 mV to reach a current density of 10 mA·cm−2 in 1.0 M KOH, outperforming most of the reported transition metal selenides electrocatalysts. Density functional theory (DFT) calculations unveil that the heterointerfaces synergistically optimize the Gibbs free energies of H2O and H* during alkaline HER, accelerating the reaction kinetics. The present work may provide new construction guidance for rational design of high-efficient electrocatalysts.
引用
收藏
页码:2895 / 2904
页数:9
相关论文
共 595 条
[1]  
Zhou K L(2021)Platinum single-atom catalyst coupled with transition metal/metal oxide heterostructure for accelerating alkaline hydrogen evolution reaction Nat. Commun. 12 3783-65
[2]  
Wang Z(2015)Advancing the electrochemistry of the hydrogen-evolution reaction through combining experiment and theory Angew. Chem., Int. Ed. 54 52-22612
[3]  
Han C B(2020)Dynamic evolution of isolated Ru-FeP atomic interface sites for promoting the electrochemical hydrogen evolution reaction J. Mater. Chem. A 8 22607-313
[4]  
Ke X(2020)Multilevel hollow MXene tailored low-Pt catalyst for efficient hydrogen evolution in full-pH range and seawater Adv. Funct. Mater. 30 1910028-203
[5]  
Wang C(2019)Engineering the electronic structure of single atom Ru sites via compressive strain boosts acidic water oxidation electrocatalysis Nat. Catal. 2 304-1512
[6]  
Jin Y(2016)Design of active and stable Co-Mo-S Nat. Mater. 15 197-306
[7]  
Zhang Q(2019) chalcogels as pH-universal catalysts for the hydrogen evolution reaction Nat. Commun. 10 4876-15399
[8]  
Liu J(2013)Anomalous hydrogen evolution behavior in high-pH environment induced by locally generated hydronium ions Energy Environ. Sci. 6 1509-419
[9]  
Wang H(2013)Correlating the hydrogen evolution reaction activity in alkaline electrolytes with the hydrogen binding energy on monometallic surfaces Nat. Chem. 5 300-10430
[10]  
Yan H(2015)Improving the hydrogen oxidation reaction rate by promotion of hydroxyl adsorption Angew. Chem., Int. Ed. 54 15395-1616