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有机热电材料的 n 型聚合物半导体。

Organic Thermoelectric Materials from n-Type Polymer Semiconductors.

机构信息

Key Laboratory of Functional Molecular Solids Ministry of Education, and School of Chemistry and Materials Science, Anhui Normal University, Wuhu, Anhui, 241002, China.

出版信息

Chempluschem. 2023 Jun;88(6):e202300215. doi: 10.1002/cplu.202300215.

Abstract

Organic thermoelectric (OTE) materials have garnered increasing attention due to their potential application in wearable/flexible TE generator for energy harvesting. To meet the practical application of thermoelectric device, high-performance p- and n-type OTE materials are both necessary. In the past few years, improved n-type polymer semiconductors have developed rapidly in the OTE field; however, their thermoelectric performance is still lagging behind p-type counterparts. Therefore, more efforts should be made to enhance n-type polymer TE performance, including development of novel molecule structure, synthesis of new dopants and optimization of device engineering. In this Review, we highlight the effects of molecular structure and side chain length and polarity of n-type polymer semiconductors on the TE performance such as electron transport, electrical conductivity, and power factor. Finally, further perspectives and challenges are also discussed to provide useful guidelines for the design of high-performance n-type OTE materials.

摘要

有机热电 (OTE) 材料由于在可穿戴/柔性 TE 发电机中的能量收集方面的潜在应用而受到越来越多的关注。为了满足热电器件的实际应用,高性能的 p 型和 n 型 OTE 材料都是必需的。在过去的几年中,改进的 n 型聚合物半导体在 OTE 领域迅速发展;然而,它们的热电性能仍然落后于 p 型对应物。因此,应该做出更多努力来提高 n 型聚合物的 TE 性能,包括开发新型分子结构、合成新掺杂剂和优化器件工程。在这篇综述中,我们强调了 n 型聚合物半导体的分子结构和侧链长度及极性对电子输运、电导率和功率因子等 TE 性能的影响。最后,还讨论了进一步的观点和挑战,为高性能 n 型 OTE 材料的设计提供了有用的指导。

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