Electrical and thermal conductivities of multiwalled carbon nanotubes-reinforced high performance polymer nanocomposites

被引:36
|
作者
Bouchard, Jonas
Cayla, Aurelie
Devaux, Eric
Campagne, Christine
机构
[1] Univ Lille Nord France, F-59000 Lille, France
[2] ENSAIT, GEMTEX, F-59100 Roubaix, France
关键词
Carbon nanotubes; Polymers; Electrical properties; Thermal properties; Extrusion; COMPOSITES; PERCOLATION; DISPERSION; BEHAVIOR; MATRIX;
D O I
10.1016/j.compscitech.2013.07.017
中图分类号
TB33 [复合材料];
学科分类号
摘要
Polyethersulfone (PES) and phenoxy based-nanocomposites filled with unmodified multi-walled carbon nanotubes (MWCNT) from 0.25 to 10 wt.% have been prepared by melt processing with a twin-screw extruder and a hot press. A morphology analysis is performed by transmission electron microscopy (TEM) in the extruded nanocomposites disclosing difference in state of dispersion despite a proper MWCNT scattering in both matrixes. The electrical conductivity measurements establish a percolation threshold Phi(c) = 0.58 wt.% and a critical exponent t = 2.3 for phenoxy against Phi(c) = 0.89 wt.% and t = 1.89 for PES-based composites by following a percolation scaling law of the form sigma = sigma(0)(Phi - Phi(c))t. Thermal conductivity assessments as function of MWCNT concentration and temperature is then carried out by modulated temperature dynamic scanning calorimetly (MDSC) in both nanocomposites. In analogy with the electrical properties, no thermal percolation behaviour is pointed out despite noteworthy increases above 1 wt.% MWCNT incorporated in PES and phenoxy and temperature dependence below glass transition temperature. The effect of gas purge is also considered and reveals to be meaningful in relation with the thermal conductivity values of MWCNT-reinforced PES and phenoxy nanocomposites. Afterwards, a comparison of the DSC technique results byMDSC is performed with a thermal conductivity measurement using a Hot Disk transient technique showing significant discordance in experimental data, sometimes over the range of +/- 15%. (c) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:177 / 184
页数:8
相关论文
共 50 条
  • [11] Fabrication of multiwalled carbon nanotubes-reinforced Sn nanocomposites for lead-free solder by an electrodeposition process
    Choi, E. K.
    Lee, K. Y.
    Oh, T. S.
    [J]. JOURNAL OF PHYSICS AND CHEMISTRY OF SOLIDS, 2008, 69 (5-6) : 1403 - 1406
  • [12] Studies on Thermal and Dynamic Viscoelastic Behaviors of Multiwalled Carbon Nanotubes-reinforced Epoxy Matrix Composites
    Seo, Min-Kang
    Park, Soo-Jin
    [J]. KOREAN CHEMICAL ENGINEERING RESEARCH, 2005, 43 (03): : 401 - 406
  • [13] On thermal and electrical properties of multiwalled carbon nanotubes/copper matrix nanocomposites
    Koppad, Praveennath G.
    Ram, H. R. Aniruddha
    Ramesh, C. S.
    Kashyap, K. T.
    Koppad, Ravikiran G.
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2013, 580 : 527 - 532
  • [14] On thermal and electrical properties of multiwalled carbon nanotubes/copper matrix nanocomposites
    [J]. Kashyap, K.T. (ktkashyap@yahoo.com), 1600, Elsevier Ltd (580):
  • [15] Improvement in electrical and thermal behavior of polystyrene/multiwalled carbon nanotubes nanocomposites
    Shah, A. H.
    Rizvi, T. Z.
    [J]. MEASUREMENT, 2013, 46 (04) : 1541 - 1550
  • [16] Thermal Behavior and Mechanical Properties of Nanocomposites of Polycarbonate Reinforced With Multiwalled Carbon Nanotubes
    Wang, Lijun
    Qiu, Jianhui
    Sakai, Eiichi
    [J]. POLYMER COMPOSITES, 2017, 38 : E303 - E313
  • [17] Modeling electrical conductivities of nanocomposites with aligned carbon nanotubes
    Bao, W. S.
    Meguid, S. A.
    Zhu, Z. H.
    Meguid, M. J.
    [J]. NANOTECHNOLOGY, 2011, 22 (48)
  • [18] Nanofluids containing multiwalled carbon nanotubes and their enhanced thermal conductivities
    [J]. Choi, M. (mchoi@plaza.snu.ac.kr), 1600, American Institute of Physics Inc. (94):
  • [19] Nanofluids containing multiwalled carbon nanotubes and their enhanced thermal conductivities
    Xie, HQ
    Lee, H
    Youn, W
    Choi, M
    [J]. JOURNAL OF APPLIED PHYSICS, 2003, 94 (08) : 4967 - 4971
  • [20] Thermal and electrical conductivities of water-based nanofluids prepared with long multiwalled carbon nanotubes
    Glory, J.
    Bonetti, M.
    Helezen, M.
    Mayne-L'Hermite, M.
    Reynaud, C.
    [J]. JOURNAL OF APPLIED PHYSICS, 2008, 103 (09)