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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Synthesis and thermoelectric properties of polycarbazole, polyindolocarbazole, and polydiindolocarbazole derivatives
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Synthesis and thermoelectric properties of polycarbazole, polyindolocarbazole, and polydiindolocarbazole derivatives

机译:聚咔唑,聚吲哚并咔唑和聚二吲哚并咔唑衍生物的合成及其热电性能

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摘要

In a quest for thermoelectric polymeric materials novel polycarbazole and polyindolocarbazole derivatives were synthesized. Alkyl side chains on the carbazole cycle and different side chains (alkyl or benzoyl) on the nitrogen atom of the backbone unit were introduced. Optical, electrochemical, electrical, and thermoelectric properties were investigated on these polymers and on two poly(diindolocarbazole)s. Band structure calculations were used to predict which polymers might be promising as thermoelectric materials. The best combination of Seebeck coefficient and conductivity (power factor) was around 10(-7) W m(-1) K-2 with copolymers comprising thiophene units alternating with carbazole or indolocarbazole. This family of polymers possesses good Seebeck coefficients, but there is still a need to improve the electrical conductivity, to produce useful thermoelectric materials.
机译:为了寻求热电聚合物材料,合成了新型聚咔唑和聚吲哚并咔唑衍生物。引入了咔唑环上的烷基侧链和主链单元氮原子上的不同侧链(烷基或苯甲酰基)。研究了这些聚合物和两种聚二吲哚并咔唑的光学,电化学,电和热电性质。带结构计算被用来预测哪些聚合物有望成为热电材料。塞贝克系数和电导率(功率因数)的最佳组合约为10(-7)W m(-1)K-2,共聚物中包含噻吩单元与咔唑或吲哚并咔唑交替出现。该聚合物家族具有良好的塞贝克系数,但是仍然需要提高电导率以生产有用的热电材料。

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