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Updated: Jan 22, 2026

Fabrication and Characterization of High-Q Silicon Nitride Membrane Resonators
Published on: August 8, 2025
Intrinsic Dual-Antifouling Silicone: Molecular Design and Coating Fabrication
Kai Zhang1, Guangming Lu2, Weiwei Cong1
1State Key Laboratory of Coatings for Advanced Equipment, Marine Chemical Research Institute Co., Ltd., Qingdao, Shandong 266072, China.
None:
Conventional antifouling coatings typically rely on external biocides or additives, yet their release leads to performance decay and environmental risks. Developing resins with intrinsic antifouling functionalities is therefore crucial for achieving durable protection. Herein, a dual-functional silicone was designed by covalently incorporating carboxyl groups with hydration-based fouling release capability and furan groups with intrinsic biocidal activity into the polymer side chains. After cross-linking, the coatings exhibited superior antifouling performance: protein adsorption was completely suppressed, while the adhesion of Escherichia coli, Staphylococcus aureus, and Pseudomonas aeruginosa was reduced from 46.3, 40.4, and 17.7%, respectively, on pristine silicone coating to 0%. Likewise, Chlorella vulgaris and Phaeodactylum tricornutum attachment decreased from 98.3 and 63.6 to 0%, respectively. The enhanced performance originates from the stable hydration layer provided by carboxyl groups, which blocks initial fouling, combined with the furan moieties that confer 100% bactericidal efficiency. This work establishes a molecular design strategy for intrinsically dual-functional silicone, providing a promising pathway toward long-lasting and environmentally benign antifouling coatings.
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