Nonoguchi Yoshiyuki, Takata Ami, Goto Chigusa, Kitano Takuya, Kawai Tsuyoshi
Division of Materials Science, Nara Institute of Science and Technology, Ikoma, Japan.
PRESTO, JST, Kawaguchi, Japan.
Sci Technol Adv Mater. 2018 Aug 13;19(1):581-587. doi: 10.1080/14686996.2018.1500851. eCollection 2018.
The effects of polymer structures on the thermoelectric properties of polymer-wrapped semiconducting carbon nanotubes have yet to be clarified for elucidating intrinsic transport properties. We systematically investigate thickness dependence of thermoelectric transport in thin films containing networks of conjugated polymer-wrapped semiconducting carbon nanotubes. Well-controlled doping experiments suggest that the doping homogeneity and then in-plane electrical conductivity significantly depend on film thickness and polymer species. This understanding leads to achieving thermoelectric power factors as high as 412 μW m K in thin carbon nanotube films. This work presents a standard platform for investigating the thermoelectric properties of nanotubes.
为了阐明本征输运特性,聚合物结构对聚合物包裹的半导体碳纳米管热电性能的影响尚待明确。我们系统地研究了包含共轭聚合物包裹的半导体碳纳米管网络的薄膜中热电输运的厚度依赖性。精心控制的掺杂实验表明,掺杂均匀性进而面内电导率显著取决于薄膜厚度和聚合物种类。这种认识使得在碳纳米管薄膜中实现了高达412 μW m⁻² K⁻² 的热电功率因子。这项工作为研究纳米管的热电性能提供了一个标准平台。