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April 16, 2026Advanced Materials0 citations

Confined Assembly of Polymer Nanowires for High‐Performance Organic Thermoelectrics

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LNLi NiuYZY ZHAODWDongyang Wang

Key Points

  • The aim is to enhance the thermoelectric performance of polymeric materials through nanowire fabrication.
  • Employs a solvent-assisted soft lithography technique for fabricating polymeric nanowires.
  • The approach facilitates ordered chain assembly within the nanowires.
  • Analyzes charge mobility and thermal conductivity for performance evaluation.
  • Achieves a 274% increase in charge mobility compared to spin-coated films.
  • Reports a 63% reduction in lattice thermal conductivity.
  • Culminates in a peak figure of merit (ZT) of 1.02 at 353 K.

Abstract

Polymeric thermoelectrics provide a lightweight and intrinsically flexible platform for converting ubiquitous low-grade waste heat into sustainable electricity. However, their practical deployment has been hindered by a low dimensionless figure of merit (ZT) and the reliance on high performance on complex processing routes. Here, we introduce a simple and controllable solvent-assisted soft lithography approach for fabricating polymeric nanowires with exceptional thermoelectric performance. 1D confinement drives ordered chain assembly, boosting charge mobility (µ), while enhanced phonon-boundary scattering suppresses lattice thermal conductivity (κL). Compared with spin-coated films, the nanowires achieve a 274% increase in µ and a 63% reduction in κL, culminating in a peak ZT of 1.02 at 353 K. This nanowire-based strategy is broadly applicable to diverse polymers, providing a robust route to nanostructure-engineered plastic thermoelectrics with both high performance and scalable manufacturability, and opening new opportunities for practical organic thermoelectric devices.

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Cite This Study

Niu et al. (2026) studied this question.

synapsesocial.com/papers/69e07cfa2f7e8953b7cbe008https://doi.org/10.1002/adma.73071
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