MOE Key Laboratory of Macromolecule Synthesis and Functionalization, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310027, P. R. China.
State Key Laboratory of Transvascular Implantation Devices, The Second Affiliated Hospital Zhejiang University School of Medicine, 88 Jiefang Rd, Hangzhou, 310009, P. R. China.
Adv Mater. 2024 Apr;36(15):e2310216. doi: 10.1002/adma.202310216. Epub 2024 Jan 23.
The sprayable hydrogel coatings that can establish robust adhesion onto diverse materials and devices hold enormous potential; however, a significant challenge persists due to monomer hydration, which impedes even coverage during spraying and induces inadequate adhesion post-gelation. Herein, a polycation-reinforced (PCR) surface bridging strategy is presented to achieve tough and sprayable hydrogel coatings onto diverse materials. The polycations offer superior wettability and instant electrostatic interactions with plasma-treated substrates, facilitating an effective spraying application. This PCR-based hydrogel coatings demonstrate tough adhesion performance to inert PTFE and silicone, including remarkable shear strength (161 ± 49 kPa for PTFE), interfacial toughness (198 ± 27 J m for PTFE), and notable tolerance to cyclic tension (10 000 cycles, 200% strain, silicone). Meanwhile, this method can be applied to various hydrogel formulations, offering diverse functionalities, including underwater adhesion, lubrication, and drug delivery. Furthermore, the PCR concept enables the conformal construction of durable hydrogel coatings onto sophisticated medical devices like cardiovascular stents. Given its simplicity and adaptability, this approach paves an avenue for incorporating hydrogels onto solid surfaces and potentially promotes untapped applications.
可在多种材料和器件上形成牢固附着的喷涂水凝胶涂层具有巨大的潜力;然而,由于单体水合作用,即使在喷涂过程中也难以完全覆盖,并且在凝胶化后会导致附着力不足,这仍然是一个重大挑战。在此,提出了一种聚阳离子增强(PCR)表面桥接策略,以在多种材料上实现坚韧且可喷涂的水凝胶涂层。聚阳离子提供了优异的润湿性和与等离子体处理基底的即时静电相互作用,从而促进了有效的喷涂应用。这种基于 PCR 的水凝胶涂层在惰性 PTFE 和硅树脂上表现出坚韧的附着力性能,包括显著的剪切强度(PTFE 为 161±49 kPa)、界面韧性(PTFE 为 198±27 J m)和对循环拉伸的显著耐受性(10000 次循环,200%应变,硅树脂)。同时,该方法可应用于各种水凝胶配方,提供多种功能,包括水下附着力、润滑和药物输送。此外,PCR 概念可实现耐用的水凝胶涂层在心血管支架等复杂医疗器械上的共形构建。鉴于其简单性和适应性,这种方法为将水凝胶整合到固体表面开辟了道路,并可能推动尚未开发的应用。