Microwave-Initiated Facile Formation of Ni3Se4 Nanoassemblies for Enhanced and Stable Water Splitting in Neutral and Alkaline Media

被引:146
|
作者
Anantharaj, Sengeni [1 ,2 ]
Kennedy, Jeevarathinam [3 ]
Kundu, Subrata [1 ,2 ,4 ]
机构
[1] Acad Sci & Innovat Res AcSIR, CSIR Cent Elect Res Inst CSIR CECRI Campus, New Delhi, India
[2] CSIR Cent Elect Res Inst CECRI, Elect Mat Sci ECMS Div, Karaikkudi 630006, Tamil Nadu, India
[3] CSIR Cent Elect Res Inst CECRI, Cent Instrumentat Facil CIF, Karaikkudi 630006, Tamil Nadu, India
[4] Texas A&M Univ, Dept Mat Sci & Mech Engn, College Stn, TX 77843 USA
关键词
electrolysis; water splitting; oxygen evolution; hydrogen evolution; Ni3Se4; nanoassemblies; overpotential; Tafel analysis; HYDROGEN-EVOLUTION REACTION; OXYGEN-EVOLUTION; HIGHLY EFFICIENT; SELENIDE NANOSHEETS; NICKEL-HYDROXIDE; COBALT SELENIDE; ELECTROCATALYST; NANOPARTICLES; ELECTRODE; FILM;
D O I
10.1021/acsami.6b15980
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Molecular hydrogen (H-2) generation through water splitting with minimum energy loss has become practically possible due to the recent evolution of high-performance electrocatalysts. In this study, we fabricated, evaluated, and presented such a high-performance catalyst which is the Ni3Se4 nanoassemblies that can efficiently catalyze water splitting in neutral and alkaline media. A hierarchical nano assembly of Ni3Se4 was fabricated by functionalizing the surface-cleaned Ni foam using NaHSe solution as the Se source with the assistance of microwave irradiation (300 W) for 3 min followed by 5 h of aging at room temperature (RT). The fabricated Ni3Se4 nanoassemblies were subjected to catalyze water electrolysis in neutral and alkaline media. For a defined current density of SO mA cm(-2), the Ni3Se4 nanoassemblies required very low overpotentials for the oxygen evolution reaction (OER), viz., 232, 244, and 321 mV at pH 14.5, 14.0, and 13.0 respectively. The associated lower Tafel slope values (33, 30, and 40 mV dec(-1)) indicate the faster OER kinetics on Ni3Se4 surfaces in alkaline media. Similarly, in the hydrogen evolution reaction (HER), for a defined current density of 50 mA cm(-2), the Ni3Se4 nanoassemblies required low overpotentials of 211, 206, and 220 mV at pH 14.5, 14.0, and 13.0 respectively. The Tafel slopes for HER at pH 14.5, 14.0, and 13.0 are 165, 156, and 128 mV dec(-1), respectively. A comparative study on both OER and HER was carried out with the state-ofthe-art RuO2 and Pt under identical experimental conditions, the results of which revealed that our Ni3Se4 is a far better highperformance catalyst for water splitting. Besides, the efficiency of Ni3Se4 nanoassemblies in catalyzing water splitting in neutral solution was carried out, and the results are better than many previous reports. With these amazing advantages in fabrication method and in catalyzing water splitting at various pH, the Ni3Se4 nanoassemblies can be an efficient, cheaper, nonprecious, and high-performance electrode for water electrolysis with low overpotentials.
引用
收藏
页码:8714 / 8728
页数:15
相关论文
共 17 条
  • [1] Interfacial electron transfer on heterostructured Ni3Se4/FeOOH endows highly efficient water oxidation in alkaline solutions
    Lv, Lin
    Chang, Yaoxing
    Ao, Xiang
    Li, Zhishan
    Li, Jian-Gang
    Wu, Ying
    Xue, Xinying
    Cao, Yulin
    Hong, Guo
    Wang, Chundong
    MATERIALS TODAY ENERGY, 2020, 17
  • [2] Cobalt, Ferrum Co-Doped Ni3Se4 Nano-Flake Array: An Efficient Electrocatalyst for the Alkaline Hydrogen Evolution and Overall Water Splitting
    Zhou, Chuancang
    Wu, Hongyu
    Zhang, Feipeng
    Miao, Yigao
    CRYSTALS, 2022, 12 (05)
  • [3] Stainless steel mesh-based CoSe/Ni3Se4 heterostructure for efficient electrocatalytic overall water splitting
    Zhou, Hongbo
    Zhang, Dongxu
    Dong, Weixuan
    Zhou, Chunxing
    Jiang, Tianyao
    Liu, Yashu
    Tian, Chungui
    Liu, Yanhong
    Liu, Yu
    Mao, Baodong
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (39) : 14554 - 14564
  • [4] Ru nanoparticles modified Ni3Se4/Ni(OH)2 heterostructure nanosheets: A fast kinetics boosted bifunctional overall water splitting electrocatalyst
    Guo, Xinyu
    Li, Jiaxin
    Meng, Fanze
    Qin, Dongdong
    Wu, Xueyan
    Lv, Yan
    Guo, Jixi
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2024, 663 : 847 - 855
  • [5] In situ formation of Ni3Se4 nanorod arrays as versatile electrocatalysts for electrochemical oxidation reactions in hybrid water electrolysis
    Zhang, Jun-Ye
    Tian, Xiaonan
    He, Ting
    Zaman, Shahid
    Miao, Mao
    Yan, Ya
    Qi, Kai
    Dong, Zehua
    Liu, Hongfang
    Xia, Bao Yu
    JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (32) : 15653 - 15658
  • [6] Structural modulation of low-valent iron in LDH-derived Ni3Se4 nanosheets: a breakthrough electrocatalyst for the overall water splitting reaction
    Karmakar, Arun
    Krishnan, Abhirami V.
    Jayan, Rahul
    Madhu, Ragunath
    Islam, Md Mahbubul
    Kundu, Subrata
    JOURNAL OF MATERIALS CHEMISTRY A, 2023, 11 (20) : 10684 - 10698
  • [7] In-situ formation of MOFs derivatives CoSe2/Ni3Se4 nanosheets on MXene nanosheets for hybrid supercapacitor with enhanced electrochemical performance
    Yang, Yuan
    Huang, Xiaoyu
    Sheng, Congyi
    Pan, Yaoyao
    Huang, Yin
    Wang, Xiuhua
    JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 920
  • [8] In-situ formation of MOFs derivatives CoSe2/Ni3Se4 nanosheets on MXene nanosheets for hybrid supercapacitor with enhanced electrochemical performance
    Yang, Yuan
    Huang, Xiaoyu
    Sheng, Congyi
    Pan, Yaoyao
    Huang, Yin
    Wang, Xiuhua
    JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 920
  • [9] Enhanced Catalysis of Electrochemical Overall Water Splitting in Alkaline Media by Fe Doping in Ni3S2 Nanosheet Arrays
    Zhang, Geng
    Feng, Yu-Shuo
    Lu, Wang-Ting
    He, Dan
    Wang, Cao-Yu
    Li, Yong-Ke
    Wang, Xun-Ying
    Cao, Fei-Fei
    ACS CATALYSIS, 2018, 8 (06): : 5431 - +
  • [10] Facile Construction of Ultrathin V-Doped NiSe2/Ni3Se4/CuSe Nanosheets for Enhanced Urea-Assisted Electrochemical Hydrogen Production
    Feng, Yuying
    Du, Wene
    Jiang, Jiahui
    Zhao, Ting
    Xu, Guancheng
    Zhang, Li
    ENERGY & FUELS, 2024, 38 (09) : 8084 - 8094