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Thermally Enhanced Flexible Phase Change Materials for Thermal Energy Conversion and Management of Wearable Electronics

20 Pages Posted: 24 Jul 2024 Publication Status: Published

See all articles by Xinyu Zhang

Xinyu Zhang

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics

Hanqing Liu

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics

Yan Kou

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics

Keyan Sun

China University of Mining & Technology

Wei Han

Hong Kong University of Science and Technology

Yongfei Zhao

Government of the People's Republic of China - Chinese PLA General Hospital

Quan Shi

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics

Abstract

The developing trend of miniaturization and integration for electronics imposes challenges of efficient heat dissipation technology, where the novel materials with advanced thermal energy conversion and management are urgently needed. In this work, we propose an emerging phase change material (PCM) system with polyvinyl alcohol/expanded graphite network loading paraffin wax (PE-PW), which exhibits superb flexibility, thermal energy storage capacity and thermal conductivity. The phase change enthalpy is from 115.61 J/g to 168.93 J/g without any leakage, which can be maintained even after 500 thermal cycles. The thermal conductivity can reach 1.46 W/mK, 484% enhanced compared with that of pure PCM. Meanwhile, the thermal management test indicates that the PE-PW composites can quickly absorb and store the generated heat to achieve temperature control, thus protecting the system from overheating and indicating the excellent thermal management capacity. This flexible PE-PW system has broad application prospects in the field of thermal energy conversion and management for wearable electronics.

Keywords: Flexible phase change materials, thermal conductivity, leakproof, thermal management

Suggested Citation

Zhang, Xinyu and Liu, Hanqing and Kou, Yan and Sun, Keyan and Han, Wei and Zhao, Yongfei and Shi, Quan, Thermally Enhanced Flexible Phase Change Materials for Thermal Energy Conversion and Management of Wearable Electronics. Available at SSRN: https://ssrn.com/abstract=4895991 or http://dx.doi.org/10.2139/ssrn.4895991

Xinyu Zhang

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics ( email )

52 Sanlihe Rd.
Datun Road, Anwai
Beijing, 100864
China

Hanqing Liu

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics ( email )

52 Sanlihe Rd.
Datun Road, Anwai
Beijing, 100864
China

Yan Kou

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics ( email )

52 Sanlihe Rd.
Datun Road, Anwai
Beijing, 100864
China

Keyan Sun

China University of Mining & Technology ( email )

Wei Han

Hong Kong University of Science and Technology ( email )

Yongfei Zhao

Government of the People's Republic of China - Chinese PLA General Hospital ( email )

Quan Shi (Contact Author)

Chinese Academy of Sciences (CAS) - Dalian Institute of Chemical Physics ( email )

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