• Journal of Inorganic Materials
  • Vol. 36, Issue 7, 711 (2021)
Fangfang LIU1, Xiuyun CHUAN1、*, Yang YANG1, and Aijun LI1、2
Author Affiliations
  • 11. The Key Laboratory of Orogenic Belts and Crustal Evolution (MOE), School of Earth and Space Sciences, Peking University, Beijing 100871, China
  • 22. Golden Feature Science and Technology Ltd, Beijing 100095, China
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    DOI: 10.15541/jim20200033 Cite this Article
    Fangfang LIU, Xiuyun CHUAN, Yang YANG, Aijun LI. Influence of N/S Co-doping on Electrochemical Property of Brucite Template Carbon Nanotubes[J]. Journal of Inorganic Materials, 2021, 36(7): 711 Copy Citation Text show less
    References

    [2] P LI, W CHEN. Recent advances in one-dimensional nanostructures for energy electrocatalysis. Chinese Journal of Catalysis, 40, 4-22(2019).

    [4] W LUO S, R GU, H SHI P et al. π-π interaction boosts catalytic oxygen evolution by self-supporting metal-organic frameworks. Journal of Power Sources, 448, 227406(2020).

    [5] C DU J, S GAO S, H SHI P et al. Three-dimensional carbonaceous for potassium ion batteries anode to boost rate and cycle life performance. Journal of Power Sources, 451, 227727(2020).

    [6] Y JIAO, Z HONG W, Y LI P et al. Metal-organic framework derived Ni/NiO micro-particles with subtle lattice distortions for high- performance electrocatalyst and supercapacitor. Applied Catalysis B: Environmental, 224, 732-739(2019).

    [7] Y MA, P HOU C, P ZHANG H et al. Three-dimensional core-shell Fe3O4/polyaniline coaxial heterogeneous nanonets: preparation and high performance supercapacitor electrodes. Electrochimica acta, 315, 114-123(2019).

    [8] T RAN F, B YANG X, L SHAO et al. Recent progress in carbon- based nanoarchitectures for advanced supercapacitors. Advanced Composites and Hybrid Materials, 1, 32-55(2018).

    [10] W ZHANG S, S YIN B, X LIU X et al. A high energy density aqueous hybrid supercapacitor with widened potential window through multi approaches. Nano Energy, 59, 41-49(2019).

    [13] M DA Y, X LIU J, L ZHOU et al. Engineering 2D architectures toward high-performance micro-supercapacitors. Advanced Materials, 31, 1802793(2019).

    [15] RAZA WASEEM, ALI FAIZAN, RAZA NADEEM et al. Recent advancements in supercapacitor technology. Nano Energy, 52, 441-473(2018).

    [18] P ZHAI Y, Q DOU Y, Y ZHAO D et al. Carbon materials for chemical capacitive energy storage. Advanced Materials, 23, 4828-4850(2011).

    [20] QAISAR ABBAS, RIZWAN RAZA, IMRAN SHABBIR et al. Heteroatom doped high porosity carbon nanomaterials as electrodes for energy storage in electrochemical capacitors: a review. Journal of Science: Advanced Materials and Devices, 4, 341-352(2019).

    [26] Q GONG S, J JIANG Z, H SHI P et al. Noble-metal-free heterostructure for efficient hydrogen evolution in visible region: molybdenum nitride/ultrathin graphitic carbon nitride. Applied Catalysis B: Environmental, 238, 318-327(2018).

    [30] L MIAO, Z ZHU D, X LIU M et al. Cooking carbon with protic salt: nitrogen and sulfur self-doped porous carbon nanosheets for supercapacitors. Chemical Engineering Journal, 347, 233-242(2018).

    [31] H WANG Y, N LIU R, D TIAN Y et al. Heteroatoms-doped hierarchical porous carbon derived from chitin for flexible all-solid- state symmetric supercapacitors. Chemical Engineering Journal, 384, 123263(2020).

    [33] KSW SING, H EVERETT D, RAW HAUL et al. Reporting physisorption data for gas solid systems with special reference to the determination of surface-area and porosity. Pure and Applied Chemistry, 57, 603-619(1985).

    [34] L MIAO, Z ZHU D, X LIU M et al. N, S co-doped hierarchical porous carbon rods derived from protic salt: facile synthesis for high energy density supercapacitors. Electrochimica Acta, 274, 378-388(2018).

    [35] H WANG W, D WANG X. Investigation of Ir-modified carbon felt as the positive electrode of an all-vanadium redox flow battery. Electrochimica Acta, 52, 6755-6762(2007).

    Fangfang LIU, Xiuyun CHUAN, Yang YANG, Aijun LI. Influence of N/S Co-doping on Electrochemical Property of Brucite Template Carbon Nanotubes[J]. Journal of Inorganic Materials, 2021, 36(7): 711
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