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Nanostructured Polystyrene Doped with Acetylsalicylic Acid and Its Antibacterial Properties

机译:纳米结构聚苯乙烯掺杂有乙酰胱氨酸及其抗菌性质

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摘要

Homogeneous polystyrene foils doped with different concentrations of acetylsalicylic acid were prepared by the solvent casting method. The surface morphology and surface chemistry of as-prepared foils were characterized in detail. Excimer laser (krypton fluoride, a wavelength of 248 nm) was used for surface nanopatterning of doped polystyrene foils. Certain combinations of laser fluence and number of laser pulses led to formation of laser-induced periodic surface structures (LIPSS) on the exposed surface. Formation of the pattern was affected by the presence of a dopant in the polystyrene structure. Significant differences in surface chemistry and morphology of laser-treated foils compared to both pristine and doped polystyrene were detected. The pattern width and height were both affected by selection of input excimer exposure conditions, and the amount of 6000 pulses was determined as optimal. The possibility of nanostructuring of a honeycomb-like pattern doped with acetylsalicylic acid was also demonstrated. Selected nanostructured surfaces were used for study the antibacterial properties for a model bacteria strain of S. aureus. The combination of altered surface chemistry and morphology of polystyrene was confirmed to have an excellent antibacterial properties.
机译:通过溶剂浇铸方法制备掺杂有不同浓度的乙酰胱氨酸酸的均相聚苯乙烯箔。详细表征了制备箔的表面形态和表面化学。准分子激光(氪气,248nm的波长为248nm)用于掺杂的聚苯乙烯箔的表面纳米件。激光流量的某些组合和激光脉冲的数量导致在暴露的表面上形成激光诱导的周期性表面结构(嘴唇)。通过聚苯乙烯结构中存在掺杂剂的情况影响了图案的形成。检测到与原始和掺杂聚苯乙烯相比,激光处理箔的表面化学和形态的显着差异。通过选择输入准分子曝光条件的选择,图案宽度和高度都受到影响,并且将6000个脉冲的量确定为最佳。还证明了掺杂有乙酰胱氨酸酸掺杂的蜂窝状图案的纳米结构的可能性。选择的纳米结构表面用于研究S. aureus的模型细菌菌株的抗菌性质。确认聚苯乙烯的改变表面化学和形态的组合具有优异的抗菌性能。

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