Makhneva Ekaterina, Barillas Laura, Weltmann Klaus-Dieter, Fricke Katja
Junior Research Group Biosensing Surfaces, Leibniz Institute for Plasma Science and Technology (INP), Felix-Hausdorff-Straße 2, 17489 Greifswald, Germany.
Biointerphases. 2020 Oct 30;15(6):061001. doi: 10.1116/6.0000582.
In this work, we report on the stability of oxygen-rich plasma-polymerized (pp) films in an aqueous environment. The pp films were deposited via atmospheric-pressure plasma jet treatment of polymerizable organic liquids. The monomers used for the plasma-assisted polymerization were tetrahydrofurfuryl methacrylate, 1,2,4-trivinylcyclohexane, and mixtures thereof. The pp films were deposited at different plasma input powers ranging from 3 to 7 W. The stability of the obtained pp films was studied upon long-time storage in pure water and in buffer solutions of pHs 4, 7, and 10. After 24 h of storage of the pp films in de-ionized water, all of the studied pp films experienced thickness losses along with the formation of various ringlike structures at their surface, whereas Fourier transformed infrared (FT-IR) analysis showed no changes in their chemical composition. The pp films stored in pH 10 were completely delaminated from the substrate surface, while the pp films stored for 24 h in pH 4 showed swelling behavior, partial delamination, and the formation of wrinkles at the coatings' surface. The pp films stored for 24 h in pH 7 experienced minor thickness losses and formation of wrinkles at their surface. FT-IR analysis of the pp films stored in buffer solutions of pH 4 and pH 7 showed a decrease of C=O and an increase of O-H stretching signals in all of the cases. The observed chemical changes corresponded to the hydrolysis of esters presented in the pp films' structure.
在本研究中,我们报告了富氧等离子体聚合(pp)薄膜在水环境中的稳定性。pp薄膜通过对可聚合有机液体进行大气压等离子体射流处理来沉积。用于等离子体辅助聚合的单体为甲基丙烯酸四氢糠酯、1,2,4 - 三乙烯基环己烷及其混合物。pp薄膜在3至7 W的不同等离子体输入功率下沉积。研究了所得pp薄膜在纯水以及pH值为4、7和10的缓冲溶液中长期储存后的稳定性。将pp薄膜在去离子水中储存24小时后,所有研究的pp薄膜都出现了厚度损失,并且在其表面形成了各种环状结构,而傅里叶变换红外(FT - IR)分析表明它们的化学成分没有变化。储存在pH值为10的溶液中的pp薄膜从基材表面完全分层,而储存在pH值为4的溶液中24小时的pp薄膜表现出膨胀行为、部分分层以及在涂层表面形成皱纹。储存在pH值为7的溶液中24小时的pp薄膜经历了轻微的厚度损失并在其表面形成皱纹。对储存在pH值为4和pH值为7的缓冲溶液中的pp薄膜进行的FT - IR分析表明,在所有情况下,C = O信号降低,O - H伸缩信号增加。观察到的化学变化对应于pp薄膜结构中酯的水解。