4.7 Review

Recent Development of Thermoelectric Polymers and Composites

Journal

MACROMOLECULAR RAPID COMMUNICATIONS
Volume 39, Issue 6, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/marc.201700727

Keywords

conductivity; power factor; Seebeck coefficient; thermoelectric composites; thermoelectric polymers

Funding

  1. Ministry of Education, Singapore [R-284-000-156-112]
  2. Natural Science Foundation of China [61504015]
  3. Natural Science Foundation of Chongqing [cstc2017jcyjAX0451]
  4. Key Laboratory of Low-grade Energy Utilization Technologies and Systems [LLEUTS-2017004]
  5. Fundamental Research Funds for the Central Universities [106112017CDJQJ148805]

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Thermoelectric materials can be used as the active materials in thermoelectric generators and as Peltier coolers for direct energy conversion between heat and electricity. Apart from inorganic thermoelectric materials, thermoelectric polymers have been receiving great attention due to their unique advantages including low cost, high mechanical flexibility, light weight, low or no toxicity, and intrinsically low thermal conductivity. The power factor of thermoelectric polymers has been continuously rising, and the highest ZT value is more than 0.25 at room temperature. The power factor can be further improved by forming composites with nanomaterials. This article provides a review of recent developments on thermoelectric polymers and polymer composites. It focuses on the relationship between thermoelectric properties and the materials structure, including chemical structure, microstructure, dopants, and doping levels. Their thermoelectric properties can be further improved to be comparable to inorganic counterparts in the near future.

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