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Enhancement of p-type thermoelectric power factor by low-temperature calcination in carbon nanotube thermoelectric films containing cyclodextrin polymer and Pd

机译:含有环管热电膜中含有环糊精聚合物和PD的碳纳米管热电薄膜的P型热电功率因数的增强

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摘要

The p-type properties of carbon nanotubes (CNTs) in organic thermoelectric devices need urgent improvement for large-scale, low-grade thermal energy applications. Here, we present a suitable approach to significantly enhance the power factor (PF) by increasing the electrical conductivity through the low-temperature calcination-induced pyrolysis of the insulating γ-cyclodextrin polymer (PγCyD), which is used as a solubilizer of film-like CNTs. The low-temperature calcination method, which can be used to realize good electrical contact between CNT bundles, shows enhancement behavior as a universal phenomenon for not only PγCyD but also other commonly used polymers for CNT films. To moderate the calcination temperature, the Pd catalyst was added, and the optimal temperature was reduced from 340 °C to 250 °C. Consequently, the PF value of the CNT film was 570 μWm~(-1) K~(-2), which was found to be more than twice that of the original CNT film. In addition, we demonstrated the energy harvesting capability of a thermoelectric generator based on this p-type CNT film; a thermoelectric generator with 10 p-type thermoelectric elements showed a maximum power output of 10.3 μW with a temperature difference of 75 °C, which is comparable to the maximum power output of some of the best single-component organic thermoelectric devices demonstrated to date. This outstanding output power shows that easy-to-handle CNT films with low-temperature heat treatment can open new avenues for the development of thermoelectric generators.
机译:有机热电装置中碳纳米管(CNT)的p型特性需要大规模低级热能应用的紧急改善。在这里,我们提出了一种合适的方法来通过增加通过低温煅烧诱导的绝缘γ-环糊精聚合物(pγcyd)的热解,其用作薄膜的增溶剂的电导率通​​过低温煅烧诱导的热解来显着提高功率因数(PF)。像cnts。低温煅烧方法可用于实现CNT束之间的良好电接触,显示出作为普遍现象的增强行为,不仅是PγCYD,而且还具有用于CNT膜的其他常用的聚合物。为了适度煅烧温度,加入Pd催化剂,并将最佳温度从340℃降低至250℃。因此,CNT膜的PF值为570μWm〜(-1)k〜(-2),发现其含有原始CNT膜的两倍。此外,我们证明了基于该P型CNT膜的热电发电机的能量收集能力;具有10 p型热电元件的热电发电机显示出最大功率输出10.3μW,温度差为75°C,与迄今为止的一些最佳单组分有机热电设备的最大功率输出相当。这种出色的输出功率显示,具有低温热处理的易于处理的CNT薄膜可以开辟热电发电机的开发的新途径。

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  • 来源
    《Applied Physics Letters》 |2021年第24期|243904.1-243904.7|共7页
  • 作者单位

    Department of Applied Chemistry Faculty of Engineering Sanyo-Onoda City University Daigaku-dori 1-1-1 Sanyo-Onoda Yamaguchi 756-0884 Japan;

    Graduate School of Engineering Sanyo-Onoda City University Daigaku-dori 1-1-1 Sanyo-Onoda Yamaguchi 756-0884 Japan;

    Department of Applied Chemistry Faculty of Engineering Sanyo-Onoda City University Daigaku-dori 1-1-1 Sanyo-Onoda Yamaguchi 756-0884 Japan;

    College of Chemistry Chemical Engineering and Materials Science Soochow University 199 Renai Road Suzhou 215123 People's Republic of China;

    Department of Applied Chemistry Faculty of Engineering Sanyo-Onoda City University Daigaku-dori 1-1-1 Sanyo-Onoda Yamaguchi 756-0884 Japan;

    Tokyo University of Science Yamaguchi Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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