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Tunable in-plane thermal conductivity of a single PEDOT:PSS nanotube

机译:可调平面单一的热导率

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Understanding the mechanism of thermal energy transport in a single nanotube (NT) is essential for successfully engineering nanostructured conducting polymers to apply to thermoelectrics or flexible electronic devices. We report the characterization of the in-plane thermal energy transport in a single poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) NTviadirect measurement of the in-plane thermal conductivity (kappa). We also demonstrate that the in-plane kappa of PEDOT:PSS NT can be tuned within the range of 0.19 to 1.92 W center dot m(-1)center dot K(-1)merely by changing the solvent used to treat the NTs in the post-fabrication stage. The in-plane thermal energy transport in a pristine NT, with its low in-plane kappa, is primarily due to phonons; in a sulfuric acid-treated NT however, significant electronic contributions lead to a high in-plane kappa. The present study will contribute to understanding the mechanism of thermal energy transport in highly disordered structures, such as conducting polymers, and to designing highly efficient polymer-based devices in which in-plane kappa plays a pivotal role in determining the energy conversion efficiency.
机译:热能的理解机制运输在一个单一的纳米管(NT)是至关重要的成功的工程纳米导电聚合物应用于热电技术或灵活的电子设备。描述平面的热能在一个单一的运输聚苯乙烯材料间是的运动)磺酸盐(PEDOT: PSS) NTviadirect测量的平面导热系数(k)。也证明了平面kPEDOT: PSS NT可调的范围之内0.19到1.92 W中心。m(1)中心点K(1)仅仅通过改变溶剂用于治疗post-fabrication nt的阶段。原始平面热能传输NT,平面kappa低,主要是由于声子;然而,重要的电子的贡献导致高平面k。将有助于理解的机制热能传输在高度无序结构,如导电聚合物,和设计高效聚合物设备平面kappa扮演关键的角色确定的能量转换效率。

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