Lin Po-Shen, Lin Jhih-Min, Tung Shih-Huang, Higashihara Tomoya, Liu Cheng-Liang
Department of Materials Science and Engineering, National Taiwan University, Taipei, 10617, Taiwan.
National Synchrotron Radiation Research Center, Hsinchu, 30076, Taiwan.
Small. 2024 Mar;20(9):e2306166. doi: 10.1002/smll.202306166. Epub 2023 Oct 17.
This study focuses on the fabrication of nanocomposite thermoelectric devices by blending either a naphthalene-diimide (NDI)-based conjugated polymer (NDI-T1 or NDI-T2), or an isoindigo (IID)-based conjugated polymer (IID-T2), with single-walled carbon nanotubes (SWCNTs). This is followed by sequential process doping method with the small molecule 4-(2,3-dihydro-1,3-dimethyl-1H-benzimidazol-2-yl)-N,N-dimethylbenzenamine (N-DMBI) to provide the nanocomposite with n-type thermoelectric properties. Experiments in which the concentrations of the N-DMBI dopant are varied demonstrate the successful conversion of all three polymer/SWCNT nanocomposites from p-type to n-type behavior. Comprehensive spectroscopic, microstructural, and morphological analyses of the pristine polymers and the various N-DMBI-doped polymer/SWCNT nanocomposites are performed in order to gain insights into the effects of various interactions between the polymers and SWCNTs on the doping outcomes. Among the obtained nanocomposites, the NDI-T1/SWCNT exhibits the highest n-type Seebeck coefficient and power factor of -57.7 µV K and 240.6 µW m K , respectively. However, because the undoped NDI-T2/SWCNT exhibits a slightly higher p-type performance, an integral p-n thermoelectric generator is fabricated using the doped and undoped NDI-T2/SWCNT nanocomposite. This device is shown to provide an output power of 27.2 nW at a temperature difference of 20 K.
本研究聚焦于通过将基于萘二亚胺(NDI)的共轭聚合物(NDI-T1或NDI-T2)或基于异靛蓝(IID)的共轭聚合物(IID-T2)与单壁碳纳米管(SWCNT)混合来制备纳米复合热电装置。随后采用小分子4-(2,3-二氢-1,3-二甲基-1H-苯并咪唑-2-基)-N,N-二甲基苯胺(N-DMBI)的顺序工艺掺杂方法,使纳米复合材料具有n型热电性能。改变N-DMBI掺杂剂浓度的实验表明,所有三种聚合物/SWCNT纳米复合材料都成功地从p型转变为n型行为。对原始聚合物和各种N-DMBI掺杂的聚合物/SWCNT纳米复合材料进行了全面的光谱、微观结构和形态分析,以深入了解聚合物与SWCNT之间各种相互作用对掺杂结果的影响。在所获得的纳米复合材料中,NDI-T1/SWCNT表现出最高的n型塞贝克系数和功率因数,分别为-57.7 μV K和240.6 μW m K 。然而,由于未掺杂的NDI-T2/SWCNT表现出略高的p型性能,因此使用掺杂和未掺杂的NDI-T2/SWCNT纳米复合材料制造了一个整体的p-n热电发电机。该装置在20 K的温差下显示出27.2 nW的输出功率。