Lim Chanoong, Huang Jun, Kim Sunjin, Lee Haeshin, Zeng Hongbo, Hwang Dong Soo
School of Interdisciplinary Bioscience and Bioengineering, Division of Integrative Biosciences and Biotechnology, School of Environmental Science and Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 790-784, Korea.
Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta, T6G 2V4, Canada.
Angew Chem Int Ed Engl. 2016 Mar 1;55(10):3342-6. doi: 10.1002/anie.201510319. Epub 2016 Feb 2.
Mussel-inspired self-polymerized catecholamine coatings have been widely utilized as a versatile coating strategy that can be applied to a variety of substrates. For the first time, nanomechanical measurements and an evaluation of the contribution of primary amine groups to poly(catecholamine) coatings have been conducted using a surface-forces apparatus. The adhesive strength between the poly(catecholamine) layers is 30-times higher than that of a poly(catechol) coating. The origin of the strong attraction between the poly(catecholamine) layers is probably due to surface salt displacement by the primary amine, π-π stacking (the quadrupole-quadrupole interaction of indolic crosslinks), and cation-π interactions (the monopole-quadrupole interaction between positively charged amine groups and the indolic crosslinks). The contribution of the primary amine group to the catecholamine coating is vital for the design and development of mussel-inspired catechol-based coating materials.
受贻贝启发的自聚合儿茶酚胺涂层已被广泛用作一种通用的涂层策略,可应用于各种基材。首次使用表面力仪进行了纳米力学测量,并评估了伯胺基团对聚(儿茶酚胺)涂层的贡献。聚(儿茶酚胺)层之间的粘附强度比聚(儿茶酚)涂层高30倍。聚(儿茶酚胺)层之间强吸引力的起源可能是由于伯胺引起的表面盐置换、π-π堆积(吲哚交联的四极-四极相互作用)和阳离子-π相互作用(带正电的胺基团与吲哚交联之间的单极-四极相互作用)。伯胺基团对儿茶酚胺涂层的贡献对于受贻贝启发的儿茶酚基涂层材料的设计和开发至关重要。