Ramos Chagas Gabriela, Kiryanenko Denis, Godeau Guilhem, Guittard Frédéric, Darmanin Thierry
Université Côte d'Azur, NICE Lab, IMREDD, Parc Valrose, 06100, Nice, France.
Chemphyschem. 2017 Dec 6;18(23):3429-3436. doi: 10.1002/cphc.201700846. Epub 2017 Oct 18.
A smart stimuli-responsive surface was fabricated by the electro-copolymerization of pyrene monomers followed by base and acid treatment. Copolymers of pyrenes bearing fluorinated chains (Py-nF ) and acid functions (Py-COOH) were produced with different molar concentrations of each monomer (0, 25, 50, 75, and 100 % of Py-nF vs. Py-COOH) by an electrochemical process. Two different perfluorinated pyrenes containing ester and amide groups were used to reach superhydrophobic properties. The relation of those bonds with the final properties of the surface was explored. The pH-sensitive group of Py-COOH allowed the surfaces to be reversibly switched from superhydrophobic (water contact angle>θ >150° and very low hysteresis) to hydrophilic (θ <90°). The amide and ester bonds influenced the recovery of the original wettability after both base and acid treatment. Although the fluorinated homopolymer with ester bonds was insensitive to base and acid treatment due to its superhydrophobic properties with ultralow water adhesion, the recovery of the original wettability for the copolymers was much more important with amide bonds due to the amide functional groups be more resistant to the hydrolysis reaction. This strategy offered the opportunity to access superhydrophobic films with switchable wettability by simple pH treatment. The films proved to be a good tool for use in biological applications, for example, as a bacterial-resistant film if superhydrophobic and as a bacterial-adherent film if hydrophilic.
通过芘单体的电共聚反应,随后进行碱处理和酸处理,制备了一种智能刺激响应表面。通过电化学方法,以不同的单体摩尔浓度(芘含氟链(Py-nF)与芘含酸官能团(Py-COOH)的比例为0、25、50、75和100%)制备了含氟链和酸官能团的芘共聚物。使用两种不同的含酯基和酰胺基的全氟芘来实现超疏水性能。探索了这些键与表面最终性能之间的关系。Py-COOH的pH敏感基团使表面能够从超疏水(水接触角>θ>150°且滞后非常低)可逆地转变为亲水(θ<90°)。酰胺键和酯键影响了碱处理和酸处理后原始润湿性的恢复。尽管含酯键的氟化均聚物由于其具有超低水附着力的超疏水性能而对碱处理和酸处理不敏感,但由于酰胺官能团对水解反应更具抗性,含酰胺键的共聚物原始润湿性的恢复更为重要。这种策略提供了通过简单的pH处理获得具有可切换润湿性的超疏水薄膜的机会。这些薄膜被证明是生物应用中的良好工具,例如,如果是超疏水的,则用作抗菌薄膜,如果是亲水的,则用作细菌粘附薄膜。