Lingxi Li , Usama Zulfiqar , Francisco V. Ramirez-Cuevas , Sumit Parvate , Yue Yu , Ahmed Alduweesh , Ivan P. Parkin , Peter Zghaib , Stephen Mead , Hassan Saeed Khan , Mat Santamouris , Riccardo Paolini , Soukaina Es-Saidi , Assaad Zoughaib , Egoi Ortego Sampedro , Ghady Abou Rached , Manish K. Tiwari , Ioannis Papakonstantinou
{"title":"全天辐射冷却,超疏水,无氟聚二甲基硅氧烷嵌入多孔聚乙烯涂层","authors":"Lingxi Li , Usama Zulfiqar , Francisco V. Ramirez-Cuevas , Sumit Parvate , Yue Yu , Ahmed Alduweesh , Ivan P. Parkin , Peter Zghaib , Stephen Mead , Hassan Saeed Khan , Mat Santamouris , Riccardo Paolini , Soukaina Es-Saidi , Assaad Zoughaib , Egoi Ortego Sampedro , Ghady Abou Rached , Manish K. Tiwari , Ioannis Papakonstantinou","doi":"10.1016/j.mtsust.2025.101168","DOIUrl":null,"url":null,"abstract":"<div><div>In this article, we introduce PolyCool, an all-organic, per- and polyfluoroalkyl substances (PFAS)-free coating designed for passive, all-day cooling applications. The coating utilizes porous polyethylene (PE), produced via a straightforward dip-coating and phase-inversion process, achieving a polydisperse pore size distribution that facilitates exceptional solar reflectance of 97.4%. To enhance its emissivity, polydimethylsiloxane (PDMS) particles synthesized through a green emulsification method, enabling scalable and size-controlled production, were incorporated. During a 36-hour continuous test in London, the developed coating achieved subambient temperature reductions of 2 °C under direct sunlight and 5.5 °C at night. These results were obtained without the use of convective shields, despite partial cloud coverage and humidity levels exceeding 40%. The radiative cooling potential of this coating has been estimated for 10 major European cities based on its spectral data and meteorological conditions. Additionally, the surface texturing of the coating enabled superhydrophobic properties, with a contact angle exceeding 160°. The coating also exhibited excellent ultraviolet (UV) resistance and can be applied to a range of substrates, including polymer films, aluminum foil, and wood, with minimal equipment and material costs.</div></div>","PeriodicalId":18322,"journal":{"name":"Materials Today Sustainability","volume":"31 ","pages":"Article 101168"},"PeriodicalIF":7.9000,"publicationDate":"2025-07-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"All-day radiative cooling with superhydrophobic, fluorine-free polydimethylsiloxane-embedded porous polyethylene coating\",\"authors\":\"Lingxi Li , Usama Zulfiqar , Francisco V. Ramirez-Cuevas , Sumit Parvate , Yue Yu , Ahmed Alduweesh , Ivan P. Parkin , Peter Zghaib , Stephen Mead , Hassan Saeed Khan , Mat Santamouris , Riccardo Paolini , Soukaina Es-Saidi , Assaad Zoughaib , Egoi Ortego Sampedro , Ghady Abou Rached , Manish K. 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All-day radiative cooling with superhydrophobic, fluorine-free polydimethylsiloxane-embedded porous polyethylene coating
In this article, we introduce PolyCool, an all-organic, per- and polyfluoroalkyl substances (PFAS)-free coating designed for passive, all-day cooling applications. The coating utilizes porous polyethylene (PE), produced via a straightforward dip-coating and phase-inversion process, achieving a polydisperse pore size distribution that facilitates exceptional solar reflectance of 97.4%. To enhance its emissivity, polydimethylsiloxane (PDMS) particles synthesized through a green emulsification method, enabling scalable and size-controlled production, were incorporated. During a 36-hour continuous test in London, the developed coating achieved subambient temperature reductions of 2 °C under direct sunlight and 5.5 °C at night. These results were obtained without the use of convective shields, despite partial cloud coverage and humidity levels exceeding 40%. The radiative cooling potential of this coating has been estimated for 10 major European cities based on its spectral data and meteorological conditions. Additionally, the surface texturing of the coating enabled superhydrophobic properties, with a contact angle exceeding 160°. The coating also exhibited excellent ultraviolet (UV) resistance and can be applied to a range of substrates, including polymer films, aluminum foil, and wood, with minimal equipment and material costs.
期刊介绍:
Materials Today Sustainability is a multi-disciplinary journal covering all aspects of sustainability through materials science.
With a rapidly increasing population with growing demands, materials science has emerged as a critical discipline toward protecting of the environment and ensuring the long term survival of future generations.