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首页> 外文期刊>ACS applied materials & interfaces >Higher PEDOT Molecular Weight Giving Rise to Higher Thermoelectric Property of PEDOT:PSS: A Comparative Study of Clevios P and Clevios PH1000
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Higher PEDOT Molecular Weight Giving Rise to Higher Thermoelectric Property of PEDOT:PSS: A Comparative Study of Clevios P and Clevios PH1000

机译:较高的佩特分子量引起PEDOT的较高热电性:PSS:Clevios P和Clevios ph1000的比较研究

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摘要

Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) is a promising candidate as the next-generation thermoelectric (TE) material. Its TE properties are strongly dependent on its chemical and electronic structures. In this paper, we investigated the effect of PEDOT molecular weight on the TE properties of PEDOT:PSS films by a comparative study on two commercial grades of PEDOT:PSS, Clevios P, and Clevios PH1000. Dynamic light scattering (DLS) and Ranian spectra imply that the PEDOT of Clevios PH1000 possesses longer conjugated chains than that of Clevios P. The TE properties of both the Clevios P and Clevios PH1000 films can be significantly enhanced through various post treatments, including solvent treatment, germinal diol treatment, organic solution treatment, and acid treatment. After these treatments, the treated Clevios PH1000 films constantly show both superior Seebeck coefficients and electrical conductivities over the treated Clevios P films. It is attributed to the higher molecular weight of PEDOT for the former than the latter. For the treated Clevios PH1000, longer PEDOT chains result in large PEDOT domains, facilitating the charge conduction a semimetallic behavior. Tuning the oxidation level of PEDOT:PSS is a facile way to enhance their TE property. A base treatment with sodium hydroxide was subsequently performed on both the treated Clevios P and Clevios PH1000 films. The power factors of both grades of PEDOT:PSS films were remarkably increased by a factor of 1.2-3.6. Still, both the conductivity and the Seebeck coefficient of a based-treated Clevios PH1000 film are superior over those of a control Clevios P film. The highest power factor the former is 334 mu W/(m K-2) for the former while only 11.4 mu W/(m K-2) for the latter. They are different by a factor of about 30 times.
机译:聚(3,4-乙二氧基噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)是作为下一代热电(TE)材料的有希望的候选者。其TE属性强烈依赖其化学和电子结构。在本文中,我们研究了PEDOT分子量对PEDOT的TE性能的影响:PSS膜通过对PEDOT的两种商业等级的比较研究:PSS,CLEVIOS P和CLEVIOS PH100​​0。动态光散射(DLS)和Ranian光谱意味着Clevios Ph1000的佩特具有比Clevios P的缀合链更长的缀合链。通过各种后处理可以显着提高Clevios P和Clevios PH100​​0薄膜的TE性能,包括溶剂处理,生发二醇处理,有机溶液处理和酸处理。在这些处理之后,经处理的Clevios PH100​​0薄膜持续地显示经处理的Clevios P膜上的优越的塞贝克系数和电导率。它归因于前者比后者的更高分子量。对于处理的Clevios PH100​​0,更长的佩特链导致大型佩特畴,促进电荷传导半个形象。调整PEDOT的氧化水平:PSS是增强其TE特性的容易方式。随后在处理过的Clevios P和Clevios PH100​​0膜上进行氢氧化钠的碱处理。 PEDOT两种等级的电源因子:PSS薄膜显着增加1.2-3.6。仍然,基于处理的Clevios PH100​​0膜的电导率和塞贝克系数均优于控制Clevios P膜的那些。前者的最高功率因数是前者的334μW/(m k-2),而后者仅为11.4μW/(m k-2)。它们的不同程度约为30倍。

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