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Enhancement of the mechanical and thermal transport properties of carbon nanotube yarns by boundary structure modulation.
Shikata, Ryo; Suzuki, Hiroo; Hayashi, Yuta; Hasegawa, Taisuke; Shigeeda, Yuho; Inoue, Hirotaka; Yajima, Wataru; Kametaka, Jun; Maetani, Mitsuaki; Tanaka, Yuichiro; Nishikawa, Takeshi; Maeda, Satoshi; Hayashi, Yasuhiko; Hada, Masaki.
Afiliação
  • Shikata R; Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Japan.
  • Suzuki H; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Hayashi Y; Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo, Japan.
  • Hasegawa T; Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo, Japan.
  • Shigeeda Y; Research and Services Division of Materials Data and Integrated System (MaDIS), National Institute for Materials Science, Tsukuba, Japan.
  • Inoue H; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Yajima W; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Kametaka J; Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Japan.
  • Maetani M; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Tanaka Y; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Nishikawa T; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Maeda S; Graduate School of Natural Science and Technology, Okayama University, Okayama, Japan.
  • Hayashi Y; Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo, Japan.
  • Hada M; Research and Services Division of Materials Data and Integrated System (MaDIS), National Institute for Materials Science, Tsukuba, Japan.
Nanotechnology ; 33(23)2022 Mar 17.
Article em En | MEDLINE | ID: mdl-35196260
ABSTRACT
Carbon nanotubes (CNTs) exhibit extremely high nanoscopic thermal/electrical transport and mechanical properties. However, the macroscopic properties of assembled CNTs are significantly lower than those of CNTs because of the boundary structure between the CNTs. Therefore, it is crucial to understand the relationship between the nanoscopic boundary structure in CNTs and the macroscopic properties of the assembled CNTs. Previous studies have shown that the nanoscopic phonon transport and macroscopic thermal transport in CNTs are improved by Joule annealing because of the improved boundary Van-der-Waals interactions between CNTs via the graphitization of amorphous carbon. In this study, we investigate the mechanical strength and thermal/electrical transport properties of CNT yarns with and without Joule annealing at various temperatures, analyzing the phenomena occurring at the boundaries of CNTs. The obtained experimental and theoretical results connect the nanoscopic boundary interaction of CNTs in CNT yarns and the macroscopic mechanical and transport properties of CNT yarns.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article