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Colorful and temperature-adaptive radiative coolers for all-season thermal management applications

Author

Listed:
  • Hu, Xin
  • Zhang, Yingbo
  • Cai, Wei
  • Ming, Yang
  • Yu, Rujun
  • Chen, Daming
  • Ho, Mei-Po Mabel
  • Wang, Faming
  • Kan, Chi-Wai
  • Noor, Nuruzzaman
  • Fei, Bin

Abstract

The cooling effect, caused by the sustainable radiative cooling, might be an adverse factor for a cause thermal management system during cold hours. To address this issue, a self-adaptive radiative cooler (SARC), integrating thermochromic microcapsule (TCM) and silica aerogel (SA) in porous polymer substrate, was designed and fabricated for dynamic thermal management system. SARC can adaptively change its solar reflectance according to the external temperature, thereby, achieving dynamic radiative cooling regulation. When the external temperature exceeding the transition temperature, SARC will experience an apparent color change (from black/red/yellow/blue to white), indicating its capacity (ΔRsol∼30 %) in dynamic manipulation of solar reflection. The incorporation of SA significantly increases the infrared emittance. The prepared SARC exhibited excellent elective infrared emissivity (0.922 in the atmospheric window), promoting the heat dissipation via radiation. The field test shows that SARC exhibiting excellent solar heating effect under solar radiation when the ambient temperature lower than the transition temperature. SARC shows similar radiative cooling performance to the porous TPU when the temperature exceeds the transition temperature. This study provided a facile approach to prepared radiative cooler with temperature-responsive solar reflectance.

Suggested Citation

  • Hu, Xin & Zhang, Yingbo & Cai, Wei & Ming, Yang & Yu, Rujun & Chen, Daming & Ho, Mei-Po Mabel & Wang, Faming & Kan, Chi-Wai & Noor, Nuruzzaman & Fei, Bin, 2025. "Colorful and temperature-adaptive radiative coolers for all-season thermal management applications," Renewable Energy, Elsevier, vol. 242(C).
  • Handle: RePEc:eee:renene:v:242:y:2025:i:c:s0960148125001090
    DOI: 10.1016/j.renene.2025.122447
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    References listed on IDEAS

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    1. Zhang, Yingbo & Tang, Hong & Li, Hangxin & Wang, Shengwei, 2025. "Unlocking the flexibilities of data centers for smart grid services: Optimal dispatch and design of energy storage systems under progressive loading," Energy, Elsevier, vol. 316(C).
    2. Yucan Peng & Jun Chen & Alex Y. Song & Peter B. Catrysse & Po-Chun Hsu & Lili Cai & Bofei Liu & Yangying Zhu & Guangmin Zhou & David S. Wu & Hye Ryoung Lee & Shanhui Fan & Yi Cui, 2018. "Nanoporous polyethylene microfibres for large-scale radiative cooling fabric," Nature Sustainability, Nature, vol. 1(2), pages 105-112, February.
    3. Hu, Xin & Zhang, Yingbo & Zhang, Jing & Yang, Hongyu & Wang, Faming & Bin Fei, & Noor, Nuruzzaman, 2022. "Sonochemically-coated transparent wood with ZnO: Passive radiative cooling materials for energy saving applications," Renewable Energy, Elsevier, vol. 193(C), pages 398-406.
    4. Aaswath P. Raman & Marc Abou Anoma & Linxiao Zhu & Eden Rephaeli & Shanhui Fan, 2014. "Passive radiative cooling below ambient air temperature under direct sunlight," Nature, Nature, vol. 515(7528), pages 540-544, November.
    5. Zhao, Bin & Hu, Mingke & Ao, Xianze & Chen, Nuo & Pei, Gang, 2019. "Radiative cooling: A review of fundamentals, materials, applications, and prospects," Applied Energy, Elsevier, vol. 236(C), pages 489-513.
    6. Jianing Song & Wenluan Zhang & Zhengnan Sun & Mengyao Pan & Feng Tian & Xiuhong Li & Ming Ye & Xu Deng, 2022. "Durable radiative cooling against environmental aging," Nature Communications, Nature, vol. 13(1), pages 1-12, December.
    7. Yang, Liu & Yan, Haiyan & Lam, Joseph C., 2014. "Thermal comfort and building energy consumption implications – A review," Applied Energy, Elsevier, vol. 115(C), pages 164-173.
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