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具有机械坚固性、高透明度和广谱抗粘附性能的自适应两性离子聚硅氮烷涂层

Self-Adaptive Zwitterionic Polysilazane Coatings with Mechanical Robustness, High Transparency, and Broad-Spectrum Antiadhesion Properties.

作者信息

Huang Yinjie, Zhang Zhenqiang, Zhang Bin, Ma Chunfeng, Zhang Guangzhao

机构信息

Faculty of Materials Science and Engineering, South China University of Technology, Guangzhou, 510640, P. R. China.

出版信息

Adv Mater. 2025 Feb;37(6):e2413035. doi: 10.1002/adma.202413035. Epub 2024 Dec 19.

Abstract

Antiadhesive coatings have been extensively studied owing to their wide applications in biology, environment, and energy. However, developing a mechanically robust coating with broad-spectrum antiadhesion properties remains challenging. Herein, a novel strategy for preparing hard yet flexible and self-adaptive zwitterionic polysilazane coatings with broad-spectrum antiadhesion properties (anti-biofouling, anti-liquid adhesion, and anti-scaling) is proposed. The coatings are prepared by combining polysilazane with a telomer (FT) consisting of a low-surface-energy fluorine motif and hydrolysis-induced zwitterions. Before Si─OH generation in polysilazane, the fluorine motif drives the zwitterionic precursor to enrich on the surface, generating a zwitterionic layer following pre-hydrolysis. This unique design prevents the coatings from swelling in water, allowing them to adapt to diverse environments. The fluorine motif can orient toward the surface of air, providing anti-liquid adhesion capabilities, whereas the zwitterions orient underwater to endow anti-biofouling, anti-liquid adhesion, and anti-scaling capabilities. The highly cross-linked network toughened by FT contributes to the high hardness (up to 7H) and good flexibility of the coating. The chemical bonding between the coating and substrates ensures their strong adhesion (≈2.06-7.67 MPa). This study contributes to the design of mechanically robust broad-spectrum antiadhesive coatings applicable in marine industries, optical devices, pipeline transportation, and other fields.

摘要

由于抗粘附涂层在生物学、环境和能源领域的广泛应用,其已得到广泛研究。然而,开发一种具有广谱抗粘附性能的机械坚固涂层仍然具有挑战性。在此,提出了一种制备具有广谱抗粘附性能(抗生物污染、抗液体粘附和抗结垢)的坚硬但灵活且自适应的两性离子聚硅氮烷涂层的新策略。这些涂层是通过将聚硅氮烷与由低表面能氟基序和水解诱导的两性离子组成的端粒(FT)相结合来制备的。在聚硅氮烷中生成Si─OH之前,氟基序驱动两性离子前驱体在表面富集,在预水解后形成两性离子层。这种独特的设计可防止涂层在水中溶胀,使其能够适应各种环境。氟基序可朝向空气表面,提供抗液体粘附能力,而两性离子在水下定向,赋予抗生物污染、抗液体粘附和抗结垢能力。由FT增韧的高度交联网络有助于涂层具有高硬度(高达7H)和良好的柔韧性。涂层与基材之间的化学键确保了它们的强附着力(≈2.06 - 7.67 MPa)。这项研究有助于设计适用于海洋工业(光学设备、管道运输等)领域的机械坚固的广谱抗粘附涂层。

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