Thermoelectric Performances of Free-Standing Polythiophene and Poly(3-Methylthiophene) Nanofilms

Thermoelectric performances of free-standing polythiophene (PT) and poly(3-methylthiophene) (PMeT) nanofilms with high tensile strength electrosynthesized from boron trifluoride diethyl etherate (BFEE) are systematically investigated. They display decent electric conductivity (47 and 73S.cm^-1), hig...

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Published inChinese physics letters Vol. 27; no. 5; pp. 212 - 215
Main Author 卢宝阳 刘聪聪 卢山 徐景坤 蒋丰兴 李玉真 张卓
Format Journal Article
LanguageEnglish
Published 2010
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ISSN0256-307X
1741-3540

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Abstract Thermoelectric performances of free-standing polythiophene (PT) and poly(3-methylthiophene) (PMeT) nanofilms with high tensile strength electrosynthesized from boron trifluoride diethyl etherate (BFEE) are systematically investigated. They display decent electric conductivity (47 and 73S.cm^-1), high Seebeck coefficient (130 and 76μV.K^-1) and low thermal conductivity (0.17 and 0.15 W.m^-1.K^-1) at room temperature. Their figure of merit can reach 3.0 × 10^-2 at 250K, higher than that of many other conducting polymers. The decrease of charge carrier concentration resulting from volatile and water-sensitive dopants from BFEE leads to the decrease of electrical conductivity but a substantial increase of the Seebeck coet~cient, making their figure-of-merit values maintained at more than 10-2 even after prolonged storage (two months). Moreover, free-standing PT and PMeT exhibit much better thermoelectric performances than those in pressed pellets due to the good arrangement of the polymer chains and preferably oriented structure in films. It therefore provides a way to improve the thermo- electric performances of conducting polymers by controlling regularity of the extended conjugated chain structure and/or the chain packing to achieve high charge mobility.
AbstractList Thermoelectric performances of free-standing polythiophene (PT) and poly(3-methylthiophene) (PMeT) nanofilms with high tensile strength electrosynthesized from boron trifluoride diethyl etherate (BFEE) are systematically investigated. They display decent electric conductivity (47 and 73S.cm^-1), high Seebeck coefficient (130 and 76μV.K^-1) and low thermal conductivity (0.17 and 0.15 W.m^-1.K^-1) at room temperature. Their figure of merit can reach 3.0 × 10^-2 at 250K, higher than that of many other conducting polymers. The decrease of charge carrier concentration resulting from volatile and water-sensitive dopants from BFEE leads to the decrease of electrical conductivity but a substantial increase of the Seebeck coet~cient, making their figure-of-merit values maintained at more than 10-2 even after prolonged storage (two months). Moreover, free-standing PT and PMeT exhibit much better thermoelectric performances than those in pressed pellets due to the good arrangement of the polymer chains and preferably oriented structure in films. It therefore provides a way to improve the thermo- electric performances of conducting polymers by controlling regularity of the extended conjugated chain structure and/or the chain packing to achieve high charge mobility.
Author 卢宝阳 刘聪聪 卢山 徐景坤 蒋丰兴 李玉真 张卓
AuthorAffiliation Jiangxi Key Laboratory of Organic Chemistry, Jiangxi Science and Technology Normal University, Nanehang 330013 Department of Control Science and Engineering, Zhejiang University, Hangzhou 310027 BOE Technology Group Co. Ltd., Beijing 100016
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StartPage 212
SubjectTerms 三氟化硼乙醚
塞贝克系数
导电聚合物
热电性能
纳米薄膜
聚合物链
聚噻吩
Title Thermoelectric Performances of Free-Standing Polythiophene and Poly(3-Methylthiophene) Nanofilms
Volume 27
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