Huang Jun, Qiu Xiaoyong, Yan Bin, Xie Lei, Yang Jingqi, Xu Haolan, Deng Yonghong, Chen Lingyun, Wang Xiaogang, Zeng Hongbo
Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.
J Mater Chem B. 2018 Jun 14;6(22):3742-3750. doi: 10.1039/c8tb00603b. Epub 2018 May 25.
This work reports novel, robust, multifunctional covalent-bonded polymer nanofilms based on highly efficient spin-assisted layer-by-layer (LbL) assembly, with a wide range of engineering and bioengineering applications. An active-ester block copolymer, polypentafluorophenylacrylate-block-polystyrene (PPFPA-b-PS), and an amine-rich polymer, branched polyethyleneimine (PEI), were chosen as model polymers. The as-prepared nanofilms show switchable hydrophobicity with controllable thickness. Nanomechanical tests demonstrate that the surface adhesion between the PPFPA-b-PS and PEI layers facilitates excellent film stability under different solvent conditions. Robust and centimeter-scale freestanding nanofilms with good transparency and excellent flexibility could be readily obtained by peeling the films from their silicon substrates without using a sacrifice layer. More importantly, the multi-layer nanofilms containing free pentafluorophenol groups or amine groups can be readily functionalized further to tailor the properties of the films for various applications. As a proof of concept, a multi-layer nanofilm with free ester groups was modified with rhodamine-6G hydrazone and tested as a H sensor. The free amine groups in the polymer nanofilms show strong interactions with perfluorooctanoic acid for achieving high surface hydrophobicity. The polymer nanofilms also show exceptional tunable cell-attachment behavior by switching the outmost layer between PPFPA-b-PS and PEI, demonstrating great potential for biomedical applications.
这项工作报道了基于高效自旋辅助逐层(LbL)组装的新型、坚固、多功能共价键合聚合物纳米薄膜,具有广泛的工程和生物工程应用。选择活性酯嵌段共聚物聚五氟苯基丙烯酸酯-嵌段-聚苯乙烯(PPFPA-b-PS)和富含胺的聚合物支化聚乙烯亚胺(PEI)作为模型聚合物。所制备的纳米薄膜显示出可切换的疏水性且厚度可控。纳米力学测试表明,PPFPA-b-PS和PEI层之间的表面粘附力有助于在不同溶剂条件下具有出色的薄膜稳定性。通过从硅基板上剥离薄膜而无需使用牺牲层,即可轻松获得具有良好透明度和出色柔韧性的坚固且厘米级的独立纳米薄膜。更重要的是,含有游离五氟苯酚基团或胺基团的多层纳米薄膜可以很容易地进一步功能化,以调整薄膜的性能用于各种应用。作为概念验证,用罗丹明-6G腙对具有游离酯基的多层纳米薄膜进行了修饰,并测试其作为H传感器。聚合物纳米薄膜中的游离胺基团与全氟辛酸表现出强烈的相互作用,以实现高表面疏水性。通过在PPFPA-b-PS和PEI之间切换最外层,聚合物纳米薄膜还显示出异常的可调细胞附着行为,展示了在生物医学应用中的巨大潜力。