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结晶度对F4TCNQ气相掺杂的P3HT热电功率因子的影响。

Influence of crystallinity on the thermoelectric power factor of P3HT vapour-doped with F4TCNQ.

作者信息

Hynynen Jonna, Kiefer David, Müller Christian

机构信息

Department of Chemistry and Chemical Engineering, Chalmers University of Technology 41296 Göteborg Sweden

出版信息

RSC Adv. 2018 Jan 4;8(3):1593-1599. doi: 10.1039/c7ra11912g. eCollection 2018 Jan 2.

Abstract

Doping of the conjugated polymer poly(3-hexylthiophene) (P3HT) with the p-dopant 2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane (F4TCNQ) is a widely used model system for organic thermoelectrics. We here study how the crystalline order influences the Seebeck coefficient of P3HT films doped with F4TCNQ from the vapour phase, which leads to a similar number of F4TCNQ anions and hence (bound + mobile) charge carriers of about 2 × 10 mol cm. We find that the Seebeck coefficient first slightly increases with the degree of order, but then again decreases for the most crystalline P3HT films. We assign this behaviour to the introduction of new states in the bandgap due to planarisation of polymer chains, and an increase in the number of mobile charge carriers, respectively. Overall, the Seebeck coefficient varies between about 40 to 60 μV K. In contrast, the electrical conductivity steadily increases with the degree of order, reaching a value of more than 10 S cm, which we explain with the pronounced influence of the semi-crystalline nanostructure on the charge-carrier mobility. Overall, the thermoelectric power factor of F4TCNQ vapour-doped P3HT increases by one order of magnitude, and adopts a value of about 3 μW m K in the case of the highest degree of crystalline order.

摘要

用p型掺杂剂2,3,5,6 - 四氟 - 7,7,8,8 - 四氰基对苯二醌二甲烷(F4TCNQ)对共轭聚合物聚(3 - 己基噻吩)(P3HT)进行掺杂,是有机热电学中广泛使用的模型体系。我们在此研究结晶有序度如何影响通过气相掺杂F4TCNQ的P3HT薄膜的塞贝克系数,气相掺杂会产生数量相近的F4TCNQ阴离子,从而产生约2×10 mol cm的(束缚 + 移动)电荷载流子。我们发现,塞贝克系数首先随有序度略有增加,但对于结晶度最高的P3HT薄膜又会再次下降。我们将这种行为分别归因于聚合物链平面化导致带隙中引入新状态以及移动电荷载流子数量的增加。总体而言,塞贝克系数在约40至60 μV K之间变化。相比之下,电导率随有序度稳步增加,达到超过10 S cm的值,我们用半结晶纳米结构对电荷载流子迁移率的显著影响来解释这一现象。总体而言,F4TCNQ气相掺杂的P3HT的热电功率因数提高了一个数量级,在结晶度最高的情况下达到约3 μW m K的值。

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