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一种具有多重响应超疏水性的智能自修复涂层的设计及其在抗生物污染和抗菌性能中的应用。

Design of a Smart Self-Healing Coating with Multiple-Responsive Superhydrophobicity and Its Application in Antibiofouling and Antibacterial Abilities.

机构信息

Department of Materials Science and Advanced Coatings Research Center of Ministry of Education, Fudan University, Shanghai 200433, P. R. China.

Key Laboratory of Inorganic Coating Materials CAS, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 8;13(48):57864-57879. doi: 10.1021/acsami.1c15239. Epub 2021 Nov 22.

Abstract

Inspired by the restoration of the superhydrophobic surfaces after the damage in nature such as lotus leaf and clover, smart self-healing coating with controllable release of loaded healing agents is both of scientific and technological interest. Herein, a smart self-healing coating with superhydrophobicity was gained through blending UV/NIR/acid/base multiple-responsive ZnO-encapsulated mesoporous polydopamine (MPDA) microspheres (zinc oxide-encapsulated mesoporous polydopamine microspheres) with silicone latex and hydrophobic nanoparticles. The hydrophobic and micro/nanostructured ZnO-encapsulated MPDA microspheres provided UV/NIR/acid/base multiple response sources for the smart self-healing coating, combining the photocatalytic activity and acid/base solubility of ZnO nanoparticles, zwitterionic characteristic of amino-modified silicone oil (ASO), as well as the photothermal conversion abilities and charge characteristics of PDA. The ZnO nanoparticles simultaneously acted as the protective layer for the stimuli-responsive microspheres and functional filler in the coating, contributing to realize the controllable and long-period release of loaded hydrophobic ASO and the further antibacterial functionalization for the coating. The super/high hydrophobicity and antibiofouling performances of the coating could be self-healed by UV, NIR, acid, or base stimuli, attributing to the release of ASO from the microspheres. Then, large-area, rapid, and controllable healing superiority could be achieved on the coating with the combined multiple responses under different conditions. Robust environmental endurances for superhydrophobic coating were also confirmed under harsh environments by directly exposing to UV-accelerated weathering and immersing into various solutions (including strong acid/base, salt, and artificial seawater solution). This smart coating has high application prospects due to its environmentally friendly nature, excellent self-healing, and multifunctional characteristics, and the multiple-responsive ZnO-encapsulated MPDA microspheres can be used for the functionalization of other materials.

摘要

受自然损伤后超疏水表面(如荷叶和三叶草)的自我修复启发,具有可控释放负载愈合剂的智能自修复涂层既具有科学意义又具有技术意义。在此,通过将 UV/NIR/酸/碱多重响应 ZnO 封装介孔聚多巴胺(MPDA)微球(氧化锌封装介孔聚多巴胺微球)与硅酮乳胶和疏水性纳米粒子混合,获得了具有超疏水性的智能自修复涂层。疏水和微/纳米结构的 ZnO 封装的 MPDA 微球为智能自修复涂层提供了 UV/NIR/酸/碱多重响应源,结合了 ZnO 纳米粒子的光催化活性和酸/碱溶解度、氨基改性硅油(ASO)的两性离子特性以及 PDA 的光热转换能力和电荷特性。ZnO 纳米粒子同时充当刺激响应微球的保护层和涂层中的功能填料,有助于实现负载疏水性 ASO 的可控和长周期释放,并进一步赋予涂层抗菌功能化。通过 UV、NIR、酸或碱刺激,涂层的超/高疏水性和抗生物污染性能可以自我修复,归因于微球中 ASO 的释放。然后,在不同条件下,通过多种响应的组合,可以实现涂层的大面积、快速和可控修复优势。通过直接暴露于 UV 加速风化和浸入各种溶液(包括强酸/碱、盐和人工海水溶液),还证实了超疏水涂层具有强大的环境耐久性。由于其环保性、优异的自修复性和多功能特性,这种智能涂层具有广阔的应用前景,并且多重响应的 ZnO 封装的 MPDA 微球可用于其他材料的功能化。

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