Thermal‐Rectified Gradient Porous Polymeric Film for Solar‐Thermal Regulatory Cooling

Author:

Wang Yufeng1,Zhang Xiaobo2,Liu Song1,Liu Ying3,Zhou Qisen1,Zhu Tianyi1,Miao Yue‐E1,Willenbacher Norbert4,Zhang Chao1ORCID,Liu Tianxi5

Affiliation:

1. State Key Laboratory for Modification of Chemical Fibers and Polymer Materials College of Materials Science and Engineering Donghua University Shanghai 201620 P.R. China

2. Department of Mechanical Engineering City University of Hong Kong 83 Tat Chee Avenue Hong Kong 999077 P.R. China

3. Department of Materials Science and Engineering City University of Hong Kong 83 Tat Chee Avenue Hong Kong 999077 P.R. China

4. Institute of Mechanical Process Engineering and Mechanics Karlsruhe Institute of Technology 76131 Karlsruhe Germany

5. Key Laboratory of Synthetic and Biological Colloids Ministry of Education School of Chemical and Material Engineering Jiangnan University Wuxi 214122 P.R. China

Abstract

AbstractSolar‐thermal regulation concerning thermal insulation and solar modulation is pivotal for cooling textiles and smart buildings. Nevertheless, a contradiction arises in balancing the demand to prevent external heat infiltration with the efficient dissipation of excess heat from enclosed spaces. Here, a concentration‐gradient polymerization strategy is presented for fabricating a gradient porous polymeric film comprising interconnected polymeric microspheres. This method involves establishing an electric field‐driven gradient distribution of charged crosslinkers in the precursor solution, followed by subsequent polymerization and freeze‐drying processes. The resulting porous film exhibits a significant porosity gradient along its thickness, leading to exceptional unidirectional thermal insulation capabilities with a thermal rectification factor of 21%. The gradient porous film, with its thermal rectification properties, effectively reconciles the conflicting demands of diverse thermal conductivity for cooling unheated and spontaneously heated enclosed spaces. Consequently, the gradient porous film demonstrates remarkable enhancements in solar‐thermal management, achieving temperature reductions of 3.0 and 4.1 °C for unheated and spontaneously heated enclosed spaces, respectively, compared to uniform porous films. The developed gradient‐structured porous film thus holds promise for the development of thermal‐rectified materials tailored to regulate solar‐thermal conditions within enclosed environments.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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