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April 11, 2026Advanced Materials6 citationsOpen Access

New‐Era Polymer Thermoelectrics: Material Innovations, Doping Frontiers, Decoupling Strategies, and Unconventional Applications

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SWSuhao Wang

Key Points

  • The aim is to explore recent innovations in polymer thermoelectrics, focusing on performance enhancement and new material strategies.
  • Review of recent advancements in polymer thermoelectrics
  • Analysis of doping methodologies and material properties
  • Discussion on electronic and thermal transport decoupling
  • Examination of degradation mechanisms in doped polymers
  • Evaluation of new applications for thermoelectric polymers
  • Significant reduction of the performance gap between p-type and n-type polymers
  • Enhanced thermoelectric properties through advanced doping techniques
  • Improved ambient and thermal stability of thermoelectric materials
  • Identification of new strategies for decoupling electronic and thermal transport
  • Emerging applications in unconventional domains.

Abstract

The field of polymer thermoelectrics has undergone transformative development in recent years, marked not only by addressing the conventional performance disparity between p-type and n-type polymers, but also by innovations in doping methodologies, new strategies for suppressing dopant-induced disorder, approaches for overcoming the inherent thermoelectric trade-off, and advancements in achieving better ambient and thermal stability, as well as their variety of new applications. Collectively, these pivotal advances have brought the field into a new era. This review focuses on the recent development of high-performance polymers that bridge the long-standing performance gap, introduces doping frontiers for more highly optimized thermoelectric properties, and discusses sophisticated strategies for decoupling electronic and thermal transport. Moreover, this work unlocks the emerging understanding of the degradation mechanisms of doped polymers that enables the design of materials with superior ambient and thermal robustness, and showcases the burgeoning applications of thermoelectric polymers in unconventional domains.

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Cite This Study

Suhao Wang (2026) studied this question.

synapsesocial.com/papers/69d9e63478050d08c1b7674fhttps://doi.org/10.1002/adma.202522912
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