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SURFACE MODIFICATION METHOD BASED ON POLYMERIZATION AND CROSS-LINKING SOLIDIFICATION OF DOPAMINE AND/OR DERIVATIVES THEREOF

机译:基于多巴胺和/或其衍生物的聚合和交联固化的表面改性方法

摘要

The present invention provides a surface modification method based on the polymerization and cross-linking solidification of dopamine and/or its derivatives, which belongs to the technical field about composite material fabrication. The principle of dopamine polymerization and the formation process of polydopamine coating layer are the foundation of the present invention. This innovative method is established after deeply analyzing the failure mechanism of polydopamine coating layer in severe environments, such as organic solvents and acidic/alkalic environments. The critical work is finding out an eligible cross-linking agent which could react with the active functional groups in polydopamine. After cross-linking reaction, the soluble low-molecular-weight dopamine oligomers could be transformed into the insoluble three-dimensional stereographic networks. In this instance, the interaction between polydopamine molecules, and the adhesion between polydopamine coating layer and substrate materials, can be significantly strengthened. After the cross-linking solidification, the hydrophilic polydopamine coating layer could be stable and effective for long-term utilization in severe environments, e.g., organic solvents and acidic/alkalic environments, and thereby expand the application scope of the surface modification method based on dopamine polymerization greatly.
机译:本发明提供了一种基于多巴胺和/或其衍生物的聚合和交联固化的表面改性方法,属于复合材料制备技术领域。多巴胺聚合的原理和聚多巴胺涂层的形成方法是本发明的基础。在深入分析聚多巴胺涂层在恶劣环境(例如有机溶剂和酸性/碱性环境)中的失效机理后,建立了这种创新方法。关键工作是找到一种可以与聚多巴胺中的活性官能团反应的合格交联剂。交联反应后,可溶的低分子量多巴胺低聚物可转变为不溶的三维立体网络。在这种情况下,聚多巴胺分子之间的相互作用以及聚多巴胺涂层与基底材料之间的粘附力可以显着增强。交联固化后,亲水性聚多巴胺涂层可以稳定,有效地在恶劣环境下长期使用,例如有机溶剂和酸性/碱性环境,从而扩大了基于多巴胺的表面改性方法的应用范围聚合很大。

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