Mengistie Desalegn A, Chen Chang-Hsiao, Boopathi Karunakara M, Pranoto Ferry W, Li Lain-Jong, Chu Chih-Wei
Nanoscience and Technology Program, Taiwan International Graduate Program, ‡Research Center for Applied Sciences, and ∥Institute of Atomic and Molecular Sciences, Academia Sinica , Taipei 115, Taiwan.
ACS Appl Mater Interfaces. 2015 Jan 14;7(1):94-100. doi: 10.1021/am507032e. Epub 2014 Dec 29.
For inorganic thermoelectric materials, Seebeck coefficient and electrical conductivity are interdependent, and hence optimization of thermoelectric performance is challenging. In this work we show that thermoelectric performance of PEDOT:PSS can be enhanced by greatly improving its electrical conductivity in contrast to inorganic thermoelectric materials. Free-standing flexible and smooth PEDOT:PSS bulky papers were prepared using vacuum-assisted filtration. The electrical conductivity was enhanced to 640, 800, 1300, and 1900 S cm(-1) by treating PEDOT:PSS with ethylene glycol, polyethylene glycol, methanol, and formic acid, respectively. The Seebeck coefficient did not show significant variation with the tremendous conductivity enhancement being 21.4 and 20.6 μV K(-1) for ethylene glycol- and formic acid-treated papers, respectively. This is because secondary dopants, which increase electrical conductivity, do not change oxidation level of PEDOT. A maximum power factor of 80.6 μW m(-1) K(-2) was shown for formic acid-treated samples, while it was only 29.3 μW m(-1) K(-2) for ethylene glycol treatment. Coupled with intrinsically low thermal conductivity of PEDOT:PSS, ZT ≈ 0.32 was measured at room temperature using Harman method. We investigated the reasons behind the greatly enhanced thermoelectric performance.
对于无机热电材料,塞贝克系数和电导率相互依存,因此优化热电性能具有挑战性。在这项工作中,我们表明,与无机热电材料相比,通过大幅提高其电导率,可以增强聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)的热电性能。使用真空辅助过滤制备了独立的柔性且光滑的PEDOT:PSS厚纸。通过分别用乙二醇、聚乙二醇、甲醇和甲酸处理PEDOT:PSS,电导率分别提高到了640、800、1300和1900 S cm⁻¹。塞贝克系数在电导率大幅提高的情况下没有显著变化,对于乙二醇处理和甲酸处理的纸张,塞贝克系数分别为21.4和20.6 μV K⁻¹。这是因为增加电导率的二次掺杂剂不会改变PEDOT的氧化水平。甲酸处理的样品显示出最大功率因子为80.6 μW m⁻¹ K⁻²,而乙二醇处理的仅为29.3 μW m⁻¹ K⁻²。结合PEDOT:PSS固有的低热导率,使用哈曼方法在室温下测得ZT≈0.32。我们研究了热电性能大幅增强背后的原因。