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September 20, 2025Advanced Functional Materials

Hybrid Flexible Thermoelectric Temperature Sensors for Early Warning

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Authors

WLWenjing LiuHubei University of Chinese MedicineCYChengyao YuanSongshan Lake Materials LaboratoryXWXin WangChangchun University of Science and Technology

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Implication

Sensor demonstrates 94% efficiency in temperature monitoring, integrating thermoelectric materials and flexibility.

Key Points

  • The sensor achieves a power factor of 154.7 µW mK−2 at 440 K, showcasing significant improvement over traditional films.
  • After 2000 bendings, the film exhibits only 6% conductivity loss, highlighting its exceptional flexibility and stability.
  • Fast temperature response is achieved within 1 second with a high efficiency of 94%, enhancing its practical usability.
  • The sensor also exhibits energy storage capabilities with zero capacity decay after 200 cycles, indicating its multifaceted applications.

Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/68d46aae31b076d99fa676a1https://doi.org/10.1002/adfm.202519209
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