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构建具有集成抗污/释放/杀灭模式的自更新有机硅-水凝胶杂化涂层以实现卓越的生物污损防护

Constructing Self-Renewing Silicone-Hydrogel Hybrid Coatings with Integrated Fouling Resistant/Release/Killing Mode toward Superior Biofouling Defense.

作者信息

Yan Minglong, Wu Saijun, Zhong Yuchen, Wu Yinghao, Wu Yangmin, Lan Xijian, Zhao Wenjie

机构信息

State Key Laboratory of Advanced Marine Materials, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, China.

出版信息

Small. 2025 Jul;21(26):e2504089. doi: 10.1002/smll.202504089. Epub 2025 May 2.

DOI:10.1002/smll.202504089
PMID:40317870
Abstract

Silicone hydrogel coatings, which integrate fouling self-release and fouling resistant properties, represent a groundbreaking advancement in environmentally friendly biofouling mitigation, but are still plagued by static fouling conditions and longevity concerns. In this work, Schiff base chemistry and a sol-gel technique is leverage to develop degradable silicone-hydrogel hybrid antifouling coatings by incorporating amphiphilic silicone-based polymers with terephthalaldehyde (TPE) and cinnamaldehyde (CAL). The synergistic combination of flexible Si─O bonds in the polymer backbone and reversible covalent crosslinking imparts exceptional flexibility (hardness of 0.135), controlled degradability, and dynamic surface self-renewal capabilities, ensuring sustained antifouling performance through surface dynamic stability. During degradation, the amphiphilic polymers will self-enrich at the interface, forming a dual-functional surface that combines fouling release and fouling resists properties. The antibacterial TPE and natural CAL, anchored within the polymer network, exhibit environment-responsive release behavior, effectively suppressing bacterial proliferation and biofilm adhesion. The optimized coating achieves a bactericidal rate of 98.8%, an anti-bacterial adhesion rate of 99.8%, and a predicted anti-fouling longevity of 5.5 years with a thickness of 200 µm. This innovative approach enables a new anti-biofouling coating that involves unique fouling control mode, thereby meeting the diverse application.

摘要

有机硅水凝胶涂层兼具污垢自释放和抗污性能,是环境友好型生物污垢缓解领域的一项突破性进展,但仍受静态污垢条件和耐久性问题的困扰。在这项工作中,利用席夫碱化学和溶胶-凝胶技术,通过将两亲性有机硅基聚合物与对苯二甲醛(TPE)和肉桂醛(CAL)结合,开发出可降解的有机硅-水凝胶杂化防污涂层。聚合物主链中柔性Si─O键与可逆共价交联的协同组合赋予了卓越的柔韧性(硬度为0.135)、可控的降解性和动态表面自我更新能力,通过表面动态稳定性确保了持续的防污性能。在降解过程中,两亲性聚合物会在界面处自富集,形成兼具污垢释放和抗污性能的双功能表面。锚定在聚合物网络中的抗菌TPE和天然CAL表现出环境响应释放行为,有效抑制细菌增殖和生物膜粘附。优化后的涂层在厚度为200 µm时,杀菌率达到98.8%,抗菌粘附率达到99.8%,预计防污寿命为5.5年。这种创新方法实现了一种具有独特污垢控制模式的新型抗生物污垢涂层,从而满足了多样化的应用需求。

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