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Flexible PANI/SWCNT thermoelectric films with ultrahigh electrical conductivity.
Wu, Ruili; Yuan, Haocheng; Liu, Chan; Lan, Jin-Le; Yang, Xiaoping; Lin, Yuan-Hua.
Affiliation
  • Wu R; State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology Beijing 100029 China lanjl@mail.buct.edu.cn yangxp@mail.buct.edu.cn.
  • Yuan H; State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology Beijing 100029 China lanjl@mail.buct.edu.cn yangxp@mail.buct.edu.cn.
  • Liu C; State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University Beijing 100084 P. R. China.
  • Lan JL; State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology Beijing 100029 China lanjl@mail.buct.edu.cn yangxp@mail.buct.edu.cn.
  • Yang X; State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology Beijing 100029 China lanjl@mail.buct.edu.cn yangxp@mail.buct.edu.cn.
  • Lin YH; State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University Beijing 100084 P. R. China.
RSC Adv ; 8(46): 26011-26019, 2018 Jul 19.
Article in En | MEDLINE | ID: mdl-35541936
ABSTRACT
The effects of polyaniline (PANI) with different polymerization times on the film-forming and thermoelectric properties as well as on the performance of SWCNTs/PANI composites were systematically investigated in this study. It was found that the film-forming and flexibility of PANI films improved with the increase in polymerization time. We showed that a super high conductivity of ∼4000 S cm-1 can be achieved for the SWCNTs/PANI composite film, which is the highest value for the SWCNTs/PANI system at present. Both the electrical conductivity and power factor increase by an order of magnitude than that of pure PANI films and far exceed the theoretical value of the mixture model. These results suggest that the sufficiently continuous and ordered regions on the interlayer between the filler and matrix are key to improve the electrical conductivity of composites. Finally, the maximum PF reaches 100 µW m-1 K-2 at 410 K for the 0.6CNT/PANI5h. Furthermore, it is found that the composite films have excellent environmental and structural stability. Our results can deepen the understanding of organic-inorganic thermoelectric composite systems and facilitate the practical application of flexible and wearable thermoelectric materials.

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: RSC Adv Year: 2018 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: RSC Adv Year: 2018 Document type: Article