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高性能N型碳纳米管复合材料:通过优化吖啶支架和定制侧链提高功率因数。

High-Performance N-Type Carbon Nanotube Composites: Improved Power Factor by Optimizing the Acridine Scaffold and Tailoring the Side Chains.

作者信息

Liu Yijia, Dai Qiuzi, Zhou Yan, Li Benzhang, Mao Xianhua, Gao Chunmei, Gao Yuan, Pan Chengjun, Jiang Qinglin, Wu Yu, Xie Yangsu, Wang Lei

机构信息

Department of Chemistry , Tsinghua University , Beijing 100084 , PR China.

Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices , South China University of Technology , Guangzhou 510640 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29320-29329. doi: 10.1021/acsami.9b10023. Epub 2019 Jul 31.

Abstract

Single-walled carbon nanotubes (SWCNTs)/organic small molecules (OSMs) are promising candidates for application in thermoelectric (TE) modules; however, the development of n-type SWCNT/OSMs with high performance is lagging behind. Only a few structure-activity relationships of OSMs on SWCNT composites have been reported. Recently, we find that the n-type acridone/SWCNT composites display high power factor (PF) values at high temperature but suffer from low PFs at room temperature. Here, the performance of SWCNT composites containing an acridine derivative (AD) as well as its analogues with different counterions (Cl, SO and F) and lengths of alkyl chains (ADLA1-2 and ADLA4-5) is reported. Among the composites, SWCNT/ADLA4 with no counterions exhibits the highest PF value of 195.2 μW m K at room temperature, which is 4.9 times higher than that of SWCNT/ADTAd (39.8 μW m K), indicating that the acridine scaffold and the lengths of alkyl chains contribute to the dramatic changes in the TE performance. In addition, SWCNT/ADLA4 exhibits high PF values at all the temperatures we investigate, which range from 154.7 to 230.7 μW m K. Furthermore, a TE device consisting of five pairs of p (the pristine SWCNTs)-n (SWCNT/ADLA4) junctions is assembled, generating a relatively high open-circuit voltage (41.7 mV) and an output power of 1.88 μW at a temperature difference of 74.8 K. Our results suggest that structural modifications might be an effective way to advance the development of TE materials.

摘要

单壁碳纳米管(SWCNTs)/有机小分子(OSMs)是有望应用于热电(TE)模块的候选材料;然而,高性能n型SWCNT/OSMs的开发却滞后了。关于OSMs对SWCNT复合材料的结构-活性关系,仅有少数报道。最近,我们发现n型吖啶酮/SWCNT复合材料在高温下显示出高功率因数(PF)值,但在室温下PF值较低。在此,报道了含有吖啶衍生物(AD)及其具有不同抗衡离子(Cl、SO和F)和烷基链长度(ADLA1 - 2和ADLA4 - 5)的类似物的SWCNT复合材料的性能。在这些复合材料中,不含抗衡离子的SWCNT/ADLA4在室温下表现出最高的PF值,为195.2 μW m⁻¹ K⁻²,比SWCNT/ADTAd(39.8 μW m⁻¹ K⁻²)高4.9倍,这表明吖啶支架和烷基链长度对TE性能的显著变化有贡献。此外,SWCNT/ADLA4在我们研究的所有温度下都表现出高PF值,范围为154.7至230.7 μW m⁻¹ K⁻²。此外,组装了一个由五对p(原始SWCNTs)-n(SWCNT/ADLA4)结组成的TE器件,在74.8 K的温差下产生了相对较高的开路电压(41.7 mV)和1.88 μW的输出功率。我们的结果表明,结构修饰可能是推进TE材料发展的有效途径。

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