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◆ ACS applied materials & interfaces2026-08-27

A Multifunctional Flexible Superhydrophobic Film for All-Weather Thermal Regulation, Anti-Icing, and Droplet Energy Harvesting.

Jianwu Wang, Yonghui Zhang, Yongxin Li, Xiaokai Li, Jiahao Zhang, Xin Liu, Jinlong Song, Jing Sun, Huanxi Zheng

原始摘要(英文原文)· Original abstract
Conventional passive radiative coolers suffer from two fundamental limitations: overcooling in cold environments and drastically reduced efficiency under cloudy or rainy conditions. Here, we overcome these challenges by developing a multifunctional flexible superhydrophobic film (AFSF) that synergistically integrates radiative cooling, anti‑icing, and droplet‑based energy harvesting within a single, durable platform. Fabricated via template replication and layer-by-layer spin-coating, the film features a hierarchical micro-/nanostructured surface that endows exceptional superhydrophobicity (water contact angle of 158 ± 0.7°, sliding angle of 8 ± 0.3°) without the need for fluorination. By incorporating 5.88 wt % TiO2 nanoparticles into the intermediate layer, the film achieves a visible reflectance of approximately 70% and a substantial cooling of 14.88 °C relative to the control under simulated solar irradiation (1100 W·m-2). Unlike conventional radiative coolers that suffer from overcooling in cold environments, the AFSF markedly delays ice formation, with a freezing time of 242 s at -20 °C (3.97 times longer than that on bare aluminum) and remains ice‑free after 20 min of continuous supercooled droplet impact. Furthermore, the film functions as a triboelectric layer for raindrop energy harvesting, delivering stable electrical output for over 100 s under periodic droplet impingement at 1.8 Hz. The AFSF also exhibits robust mechanical durability (contact angle > 150° after 24 m sandpaper abrasion) and UV aging resistance (180 min at 15 mW·cm-2, equivalent to 6000 UVI). This work successfully reconciles the often conflicting optical, thermal, and mechanical demands in multifunctional systems and offers a versatile platform for all‑weather thermal regulation, self‑cleaning, anti‑icing, and decentralized microenergy harvesting in complex outdoor environments.
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A Multifunctional Flexible Superhydrophobic Film for All-Weather Thermal Regulation, Anti-Icing, and Droplet Energy Harvesting. — 科研速览 Science Skim