Construction of an Advanced NiFe-LDH/MoS2-Ni3S2/NF Heterostructure Catalyst toward Efficient Electrocatalytic Overall Water Splitting

被引:49
作者
Wang, Shuting [1 ]
Ning, Xueer [1 ]
Cao, Yali [1 ]
Chen, Ruqi [2 ]
Lu, Zhenjiang [1 ]
Hu, Jindou [1 ]
Xie, Jing [1 ]
Hao, Aize [1 ]
机构
[1] Xinjiang Univ, Coll Chem, State Key Lab Chem & Utilizat Carbon Based Energy, Urumqi 830017, Xinjiang, Peoples R China
[2] Kansas State Univ, Dept Ind & Mfg Syst Engn, Manhattan, KS 66506 USA
基金
中国国家自然科学基金;
关键词
LAYERED DOUBLE HYDROXIDE; BIFUNCTIONAL ELECTROCATALYST; MOS2; PERFORMANCE; INTERFACE; SULFUR; NI3S2; LDH;
D O I
10.1021/acs.inorgchem.3c00425
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Developing high-efficiency, low-cost, and earth-abundant electrocatalysts toward the oxygen evolution reaction (OER) and the hydrogen evolution reaction (HER) is highly desirable for boosting the energy efficiency of water splitting. Herein, we adopted an interfacial engineering strategy to enhance the overall water splitting (OWS) activity via constructing a bifunctional OER/HER electrocatalyst combining MoS2-Ni3S2 with NiFe layered double hydroxide (NiFe-LDH) on a nickel foam substrate. The NiFe-LDH/MoS2-Ni3S2/NF electrocatalyst delivers superior OER/HER activity and stability, such as low overpotentials (220 and 79 mV for OER and HER at current densities of 50 and 10 mA cm-2, respectively) and a low Tafel slope. This excellent electrocatalytic performance mainly benefits from the electronic structure modulation and synergistic effects between NiFe-LDH and MoS2-Ni3S2, which provides a high electrochemical activity area, more active sites, and strong electron interaction. Furthermore, the assembly of NiFe-LDH/MoS2-Ni3S2/NF into a two-electrode system only requires an ultra-low cell voltage of 1.50 V at a current density of 10 mA cm-2 and exhibits outstanding stability with a decay of current density of only 2.11% @50 mA cm-2 after 50 h, which is far superior to numerous other reported transition metal NiFe-LDH and MoS2-Ni3S2-based as well as RuO2||Pt-C electrocatalysts. This research highlights the rational design of heterostructures to efficiently advance electrocatalysis for water splitting applications.
引用
收藏
页码:6428 / 6438
页数:11
相关论文
共 58 条
[1]   Recent advances in highly active nanostructured NiFe LDH catalyst for electrochemical water splitting [J].
Bodhankar, Pradnya M. ;
Sarawade, Pradip B. ;
Singh, Gurwinder ;
Vinu, Ajayan ;
Dhawale, Dattatray S. .
JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (06) :3180-3208
[2]   CoS2 Nanoparticles Supported on rGO, g-C3N4, BCN, MoS2, and WS2 Two-Dimensional Nanosheets with Excellent Electrocatalytic Performance for Overall Water Splitting: Electrochemical Studies and DFT Calculations [J].
Borthakur, Priyakshree ;
Boruah, Purna K. ;
Das, Manash R. ;
Ibrahim, Mohamed M. ;
Altalhi, Tariq ;
El-Sheshtawy, Hamdy S. ;
Szunerits, Sabine ;
Boukherroub, Rabah ;
Amin, Mohammed A. .
ACS APPLIED ENERGY MATERIALS, 2021, 4 (02) :1269-1285
[3]   Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments [J].
Chatenet, Marian ;
Pollet, Bruno G. ;
Dekel, Dario R. ;
Dionigi, Fabio ;
Deseure, Jonathan ;
Millet, Pierre ;
Braatz, Richard D. ;
Bazant, Martin Z. ;
Eikerling, Michael ;
Staffell, Iain ;
Balcombe, Paul ;
Shao-Horn, Yang ;
Schaefer, Helmut .
CHEMICAL SOCIETY REVIEWS, 2022, 51 (11) :4583-4762
[4]  
CHEN B, 2023, THERANOSTICS
[5]   Constructing Hierarchical Fluffy CoO-Co4N@NiFe-LDH Nanorod Arrays for Highly Effective Overall Water Splitting and Urea Electrolysis [J].
Chen, Baojin ;
Humayun, Muhammad ;
Li, Yadong ;
Zhang, Huaming ;
Sun, Huachuan ;
Wu, Ying ;
Wang, Chundong .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2021, 9 (42) :14180-14192
[6]   One-Pot Hydrothermal Synthesis of Ni3S2/MoS2/FeOOH Hierarchical Microspheres on Ni Foam as a High-Efficiency and Durable Dual-Function Electrocatalyst for Overall Water Splitting [J].
Fan, Chen ;
Yue, Xiaoyang ;
Shen, Xiaoping ;
Cheng, Jia ;
Ke, Wentao ;
Ji, Zhenyuan ;
Yuan, Aihua ;
Zhu, Guoxing .
CHEMELECTROCHEM, 2021, 8 (04) :665-674
[7]   Revealing the effect of interfacial electron transfer in heterostructured Co9S8@NiFe LDH for enhanced electrocatalytic oxygen evolution [J].
Feng, Xueting ;
Jiao, Qingze ;
Dai, Zheng ;
Dang, Yanliu ;
Suib, Steven L. ;
Zhang, Jiatao ;
Zhao, Yun ;
Li, Hansheng ;
Feng, Caihong ;
Li, Anran .
JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (20) :12244-12254
[8]   Construction of Ni3S2-NixPy/NF@NiFe LDH with heterogeneous interface to accelerate catalytic kinetics of overall water splitting [J].
Han, Chengdong ;
Ji, Zhengtong ;
Zhu, Yongfu ;
Yao, Xue ;
Chen, Peng ;
Guo, Manying ;
Zhao, Lijun ;
Lang, Xingyou ;
Jiang, Qing .
MATERIALS RESEARCH LETTERS, 2022, 10 (11) :762-770
[9]   Self-supported Ni3Se2@NiFe layered double hydroxide bifunctional electrocatalyst for overall water splitting [J].
Hu, Jin ;
Zhu, Shengli ;
Liang, Yanqin ;
Wu, Shuilin ;
Li, Zhaoyang ;
Luo, Shuiyuan ;
Cui, Zhenduo .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2021, 587 :79-89
[10]   Interface engineering for enhancing electrocatalytic oxygen evolution of NiFe LDH/NiTe heterostructures [J].
Hu, Liuyong ;
Zeng, Xiong ;
Wei, Xiaoqian ;
Wang, Hengjia ;
Wu, Yu ;
Gu, Wenling ;
Shi, Le ;
Zhu, Chengzhou .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2020, 273