Improved electrical conductivity of graphene film using thermal expansion-assisted hot pressing method

被引:0
|
作者
Hong, Dongpyo [1 ]
Park, Gun-Sik [2 ]
机构
[1] Seoul Natl Univ, Adv Inst Convergence Technol, Seoul 16229, Gyeonggi Do, South Korea
[2] Seoul Natl Univ, Inst Appl Phys, Ctr THz Driven Biomed Syst, Dept Phys & Astron,Coll Nat Sci, Seoul 08826, South Korea
基金
新加坡国家研究基金会;
关键词
Graphene film; Electrical conductivity; Pore elimination; Hot pressing; Reduced graphene oxide; OXIDE-FILMS; LIQUID-CRYSTALS; GRAPHITE; REDUCTION; PAPER; DISPERSIONS; FABRICATION; OXIDATION;
D O I
10.1007/s40042-024-01184-7
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Achieving highly conductive graphene films requires the elimination of pores formed during the thermal reduction of graphene oxide (GO). Conventional methods such as hydraulic pressing often struggle to remove these pores effectively, especially in sub-micron large area films for uniform high pressure. In this study, we introduce a thermal expansion-assisted hot pressing (TEHP) technique that leverages the differential thermal expansion between graphite and tungsten to achieve pore-free, highly conductive graphene films. Here we heat the GO film sandwiched between graphite (high thermal expansion coefficient) and tungsten (low thermal expansion coefficient) to 1800 degrees C where pressures of 13-48 MPa are estimated. The TEHP resulted in graphene films with a smooth, metallic surface, free of macropores. Raman spectroscopy and electron microscopy analyses confirmed the enhanced crystallinity and compactness of the films. The electrical conductivity of the hot-pressed graphene films shows a threefold improvement over normally annealed films. This scalable method offers a viable pathway for producing high-performance graphene films for advanced applications.
引用
收藏
页码:830 / 837
页数:8
相关论文
共 50 条
  • [21] Quantitative analyses of factors affecting thermal conductivity of nanofluids using an improved transient hot-wire method apparatus
    Lee, Joohyun
    Lee, Hansul
    Baik, Young-Jin
    Koo, Junemo
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2015, 89 : 116 - 123
  • [22] Sensing the thermal conductivity of deteriorated mineral oils using a hot-film microsensor
    Kuntner, J
    Chabicovsky, R
    Jakoby, B
    SENSORS AND ACTUATORS A-PHYSICAL, 2005, 123-24 : 397 - 402
  • [23] Measurement of thin film thermal conductivity using the laser flash method
    Ruoho, Mikko
    Valset, Kjetil
    Finstad, Terje
    Tittonen, Ilkka
    NANOTECHNOLOGY, 2015, 26 (19)
  • [24] Thermal Conductivity and Sintering Mechanism of Aluminum/Diamond Composites Prepared by DC-Assisted Fast Hot-Pressing Sintering
    Jia, Jianping
    Hei, Xiaoxuan
    Yang, Xiao
    Zhao, Wei
    Wang, Yuqi
    Zhuo, Qing
    Li, Yuanyuan
    Dong, Hangyu
    Liu, Futian
    Li, Yingru
    Yan, Xiaoshan
    MATERIALS, 2024, 17 (09)
  • [25] Enhancing thermal conductivity of epoxy composites via f-BN@f-MgO hybrid fillers assisted by hot pressing
    Wu, Xudong
    Yu, Haojie
    Wang, Li
    Meng, Xingguang
    Huang, Zhikun
    Liu, Xiaowei
    Gong, Xiaodan
    Liu, Jinyi
    POLYMER COMPOSITES, 2023, 44 (05) : 2966 - 2976
  • [26] Fabrication of reduced graphene oxide with high electrical conductivity by thermal-assisted photoreduction of electrochemically-exfoliated graphene oxide
    Hirotomi, Yuji
    Kubota, Wataru
    Utsunomiya, Toru
    Ichii, Takashi
    Sugimura, Hiroyuki
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2022, 61 (SL)
  • [27] Latex co-coagulation approach to fabrication of polyurethane/graphene nanocomposites with improved electrical conductivity, thermal conductivity, and barrier property
    Wu S.L.
    Shi T.J.
    Zhang L.Y.
    Shi, Tie Jun (stjhfut@163.com), 1600, John Wiley and Sons Inc (133):
  • [28] Latex co-coagulation approach to fabrication of polyurethane/graphene nanocomposites with improved electrical conductivity, thermal conductivity, and barrier property
    Wu, Sheng Li
    Shi, Tie Jun
    Zhang, Li Yuan
    JOURNAL OF APPLIED POLYMER SCIENCE, 2016, 133 (11)
  • [29] Thermal conductivity measurements using the transient hot-wire method: a review
    Salim, S. G. R.
    MEASUREMENT SCIENCE AND TECHNOLOGY, 2022, 33 (12)
  • [30] THE THERMAL CONDUCTIVITY OF SELECTED TROPICAL TIMBER SPECIES USING HOT BOX METHOD
    Hata, Raihana Mohamad
    Hassan, Rohana
    Idayu, Haslin
    Arshad, Fadzil
    JURNAL TEKNOLOGI, 2016, 78 (5-4): : 7 - 12