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通过将二溴取代的噻吩并苯与单壁碳纳米管复合提高热电性能。

Elevating Thermoelectric Performance by Compositing Dibromo-Substituted Thienoacene with SWCNTs.

作者信息

Li Yiyang, Dong Jiaxuan, Wu Xin, Huo Bingchen, Liu Peiyao, Li Baolin, Guo Cun-Yue

机构信息

School of Chemical Sciences, University of Chinese Academy of Sciences, Beijing 101408, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 10;16(27):35190-35199. doi: 10.1021/acsami.4c07042. Epub 2024 Jun 29.

DOI:10.1021/acsami.4c07042
PMID:38943571
Abstract

Composites of organic small molecules (OSMs) and single-walled carbon nanotubes (SWCNTs) have drawn great attention as flexible thermoelectric (TE) materials in recent years. Here, we synthesized thieno[2',3':4,5]thieno[3,2-]thieno[2,3-]thiophene (TTA) and 2,6-dibromothieno[2',3':4,5]thieno[3,2-]thieno[2,3-]thiophene (TTA-2Br) and compounded them with SWCNTs, obtaining thermoelectric TTA/SWCNT and TTA-2Br/SWCNT composites. The introduction of the electron-withdrawing Br group was found to decrease the highest molecular orbital energy level and bandgap () of TTA-2Br. As a result, the Seebeck coefficient () and power factor (PF) of the OSM/SWCNT composite films were significantly improved. Moreover, suitable energy barrier between TTA-2Br and SWCNTs facilitates the energy filtering effect, which further enhances thermoelectric properties of the 40 wt % TTA-2Br/SWCNT composite film with optimum thermoelectric properties (PF = 242.59 ± 9.42 μW m K at room temperature), good thermal stability, and mechanical flexibility. In addition, the thermoelectric generator (TEG) prepared using 40 wt % TTA-2Br/SWCNT composite films and n-type SWCNT films can generate an output power of 102.8 ± 7.4 nW at a temperature difference of 20 °C. This work provides new insights into the preparation of OSM/SWCNT composites with significantly enhanced thermoelectric properties.

摘要

近年来,有机小分子(OSMs)与单壁碳纳米管(SWCNTs)的复合材料作为柔性热电(TE)材料受到了广泛关注。在此,我们合成了噻吩并[2',3':4,5]噻吩并[3,2-]噻吩并[2,3-]噻吩(TTA)和2,6-二溴噻吩并[2',3':4,5]噻吩并[3,2-]噻吩并[2,3-]噻吩(TTA-2Br),并将它们与SWCNTs复合,得到了热电TTA/SWCNT和TTA-2Br/SWCNT复合材料。研究发现,吸电子Br基团的引入降低了TTA-2Br的最高分子轨道能级和带隙()。结果,OSM/SWCNT复合薄膜的塞贝克系数()和功率因子(PF)得到了显著提高。此外,TTA-2Br与SWCNTs之间合适的能垒促进了能量过滤效应,这进一步提高了具有最佳热电性能(室温下PF = 242.59 ± 9.42 μW m K)、良好热稳定性和机械柔韧性的40 wt% TTA-2Br/SWCNT复合薄膜的热电性能。此外,使用40 wt% TTA-2Br/SWCNT复合薄膜和n型SWCNT薄膜制备的热电发电机(TEG)在20°C的温差下可产生102.8 ± 7.4 nW的输出功率。这项工作为制备热电性能显著增强的OSM/SWCNT复合材料提供了新的见解。

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