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由聚合物两性离子/多巴胺复合涂层制备的水下超疏油表面。

Underwater Superoleophobic Surfaces Prepared from Polymer Zwitterion/Dopamine Composite Coatings.

作者信息

Chang Chia-Chih, Kolewe Kristopher W, Li Yinyong, Kosif Irem, Freeman Benny D, Carter Kenneth R, Schiffman Jessica D, Emrick Todd

机构信息

Department of Polymer Science & Engineering, Conte Center for Polymer Research, 120 Governors Drive, University of Massachusetts, Amherst, MA 01003, USA.

Department of Chemical Engineering, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

Adv Mater Interfaces. 2016 Mar 23;3(6). doi: 10.1002/admi.201500521. Epub 2016 Jan 18.

Abstract

Hydration is central to mitigating surface fouling by oil and microorganisms. Immobilization of hydrophilic polymers on surfaces promotes retention of water and a reduction of direct interactions with potential foulants. While conventional surface modification techniques are surface-specific, mussel-inspired adhesives based on dopamine effectively coat many types of surfaces and thus hold potential as a universal solution to surface modification. Here, we describe a facile, one-step surface modification strategy that affords hydrophilic, and underwater superoleophobic, coatings by the simultaneous deposition of polydopamine (PDA) with poly(methacryloyloxyethyl phosphorylcholine) (polyMPC). The resultant composite coating features enhanced hydrophilicity (i.e., water contact angle of ~10° in air) and antifouling performance relative to PDA coatings. PolyMPC affords control over coating thickness and surface roughness, and results in a nearly 10 fold reduction in adhesion relative to unmodified glass. The substrate-independent nature of PDA coatings further promotes facile surface modification without tedious surface pretreatment, and offers a robust template for codepositing polyMPC to enhance biocompatibility, hydrophilicity and fouling resistance.

摘要

水合作用对于减轻油类和微生物造成的表面污染至关重要。在表面固定亲水性聚合物可促进水分保留,并减少与潜在污染物的直接相互作用。虽然传统的表面改性技术具有表面特异性,但基于多巴胺的贻贝启发式粘合剂能有效覆盖多种类型的表面,因此有望成为表面改性的通用解决方案。在此,我们描述了一种简便的一步法表面改性策略,通过同时沉积聚多巴胺(PDA)和聚(甲基丙烯酰氧基乙基磷酰胆碱)(聚MPC)来获得亲水性和水下超疏油性涂层。相对于PDA涂层,所得复合涂层具有增强的亲水性(即在空气中水接触角约为10°)和防污性能。聚MPC可控制涂层厚度和表面粗糙度,与未改性玻璃相比,附着力降低了近10倍。PDA涂层不依赖于基材的特性进一步促进了简便的表面改性,无需繁琐的表面预处理,并为共沉积聚MPC提供了一个强大的模板,以增强生物相容性、亲水性和抗污性。

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