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Colored BN-Based Composite Film with Superior Spectrally Selective, Thermal Conductivity, and Antibacterial
Peng Zhao1, Yu Yao1, Yingchao Liu1
1School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu610054, China.
Abstract:
Developing advanced polymer-based composite materials integrating zero-energy thermal management and aesthetic experience can achieve lightweight and compact thermal management for electrical devices. For this goal, we propose a colored spectrally selective film (SSF) combining the plate hexagonal boron nitride with waterborne polyurethane. After a facile and scalable mechanical stirring method, the resulting composite colored SSF exhibits a favorable optical performance, which maintains a thermal emittance (ε) of ∼92.6%, while possessing a high thermal conductivity of 0.834 W·m-1·K-1. Benefiting from the synergy of the above two aspects, our colored SSFs can reduce temperatures by up to ∼15 °C compared to the bare heater with the input power of 2.75 kW·m-2. Additionally, the white SSF with an exceptional reflectance (r) of 92.7% in the solar spectrum can achieve an average temperature drop of 16.07 °C when subjected to an extra solar irradiation of 1 kW·m-2, with an estimated cooling power of 100.98 W·m-2. More attractively, our SSF exhibits an excellent antimicrobial rate of 99.99%, enabling it to simultaneously achieve thermal management and sterilization protection for interactive smart devices. All these competitive performances render our colored SSFs a potentially promising candidate for all-weather thermal management in electrical devices.

