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◆ Nano Materials Science2026-04-01· Biofouling

Daylight-driven photocatalysis fluorescence synergy on bioinspired micro/nanostructured PDMS films for all weather static marine antifouling

Mai Zhang, Nan Zhou, Cong Luo, Xue Zhang, Yiming Li, Yue Liu, Zhjie Ke, Jianjun Liao, Linlin Zhang

原始摘要(英文原文)· Original abstract
Enhancing the static antifouling performance of silicone-based coatings using low-cost, high-performance, and environmentally friendly materials has remained a persistent challenge. Here, we successfully developed an all-weather antifouling composite film (CNTEP), by combining the natural extract 7-amino-4-methylcoumarin with an Cs 3 Bi 2 Br 9 /NiTiO 3 S-scheme heterojunction photocatalyst on a polydimethylsiloxane film featuring a bioinspired coconut leaf surface, which integrates the multiple functions of natural antibacterial activity, UV responsive blue fluorescence, efficient reactive oxygen species release, and reduced contact with fouling organisms towards long-term anti-biofouling. The integrated design and excellent integrity of the biomimetic and catalytic components, as proved by experiments and theoretical calculations, provide a strong synergistic effect. The CNTEP film achieved a maximum antibacterial rate of 97.36 % and an anti-algae adhesion rate of 98.51 %, and remained stable after the antifouling test. Due to the strong synergistic mechanism, the CNTEP composite films achieved long-term marine antifouling in a stagnant/low-flow environment all-weather, and completely avoided traditional heavy metal fungicides, with a cost approximately 25 % lower than that of Cu-based coatings.
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Daylight-driven photocatalysis fluorescence synergy on bioinspired micro/nanostructured PDMS films for all weather static marine antifouling — 科研速览 Science Skim