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Antimicrobial Activity of Polysiloxane Coatings Containing Quaternary Ammonium-Functionalized POSS

机译:含有季铵官能化的聚硅氧烷涂层的抗微生物活性

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An array of quaternary ammonium functionalized-POSS (Q-POSS) compounds with different alkyl chain lengths and counter ions were synthesized using a two-step process. First, octasilane POSS was functionalized with dimethylamino groups by hydrosilylation with allyldimethylamine. Next, partial quaternization of the tertiaryamino-functional POSS was achieved using an alkyl halide to produce the Q-POSS. Alkyl chain length of the Q-POSS compounds was varied from -C_(12)H_(25) to -C_(18)H_(37) and the counter ions were varied between chlorine, bromine, and iodine. Moisture-cured polysiloxane coatings were prepared by dispersing Q-POSS molecules into a solution blend of silanol-terminated polydimethylsiloxane, methylacetoxysilane, and a catalyst. In order to evaluate the utility of the Q-POSS molecules as a broad spectrum antimicrobial additive, the antimicrobial activity of the coatings toward the Gram-negative bacterium, Escherichia coli, the Gram-positive bacterium, Staphylococcus aureus, and the opportunistic fungal pathogen, Candida albicans, was determined using an agar plating method. The results obtained showed that both the composition of the Q-POSS and the composition of the polysiloxane matrix affected antimicrobial properties. Compositions were identified that inhibited the growth of all three microorganisms on the coating surface. Surface Raman spectroscopic analysis was performed on selected set of coatings in order to understand the relative concentration of Q-POSS molecules at the coating surface.
机译:使用两步法合成具有不同烷基链长度和抗衡离子的季铵官能化(Q-POSS)化合物。首先,通过用烯丙基二甲胺氢化硅烷化与二甲基氨基官能团官能化。接下来,使用烷基卤化物实现叔亚氨基官能的部分季铵化以产生Q-POLS。 Q-POSS化合物的烷基链长度由-C_(12)H_(25)变化至-C_(18)H_(37),并且抗衡离子在氯,溴和碘之间变化。通过将Q-POSS分子分散到硅烷醇封端的聚二甲基硅氧烷,甲基乙酰甲硅烷和催化剂的溶液混合物中,制备水分固化的聚硅氧烷涂层。为了评估Q-POSS分子作为广谱抗微生物添加剂的效用,涂层朝向革兰氏阴性细菌,大肠杆菌,革兰氏阳性细菌,金黄色葡萄球菌和机会真菌病原体的抗菌活性,念珠菌白醛人使用琼脂电镀方法测定。得到的结果表明,Q-POSS的组成和聚硅氧烷基质的组成影响了抗微生物性质。鉴定了组合物,其抑制涂层表面上的所有三种微生物的生长。在所选的一组涂层上进行表面拉曼光谱分析,以便理解涂层表面上的Q-POSS分子的相对浓度。

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