Department of Bioengineering, University of California at Berkeley, Berkeley, CA, 94720, USA.
Laser Thermal Laboratory, Department of Mechanical Engineering, University of California at Berkeley, Berkeley, CA, 94720, USA.
Nat Commun. 2020 Sep 24;11(1):4848. doi: 10.1038/s41467-020-18654-8.
Polydopamine (PDA) is a simple and versatile conformal coating material that has been proposed for a variety of uses; however in practice its performance is often hindered by poor mechanical properties and high roughness. Here, we show that blue-diode laser annealing dramatically improves mechanical performance and reduces roughness of PDA coatings. Laser-annealed PDA (LAPDA) was shown to be >100-fold more scratch resistant than pristine PDA and even better than hard inorganic substrates, which we attribute to partial graphitization and covalent coupling between PDA subunits during annealing. Moreover, laser annealing provides these benefits while preserving other attractive properties of PDA, as demonstrated by the superior biofouling resistance of antifouling polymer-grafted LAPDA compared to PDA modified with the same polymer. Our work suggests that laser annealing may allow the use of PDA in mechanically demanding applications previously considered inaccessible, without sacrificing the functional versatility that is so characteristic of PDA.
聚多巴胺(PDA)是一种简单且用途广泛的保形涂层材料,已被提议用于多种用途;然而,在实际应用中,其性能往往受到机械性能差和粗糙度高的限制。在这里,我们表明,蓝激光二极管退火显著改善了 PDA 涂层的机械性能并降低了其粗糙度。激光退火的 PDA(LAPDA)比原始 PDA 耐刮擦性高 100 多倍,甚至优于坚硬的无机基底,我们将其归因于退火过程中 PDA 亚基的部分石墨化和共价键合。此外,激光退火在保留 PDA 其他吸引人的特性的同时提供了这些好处,如抗污聚合物接枝 LAPDA 的优异抗生物污染性与用相同聚合物修饰的 PDA 相比。我们的工作表明,激光退火可能允许在以前认为无法实现的机械要求高的应用中使用 PDA,而不会牺牲 PDA 如此典型的功能多样性。