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Superhydrophilic Polystyrene Nanofiber Materials Generating O2(~1Δ_g): Postprocessing Surface Modifications toward Efficient Antibacterial Effect

机译:产生O2(〜1Δ_g)的超亲水性聚苯乙烯纳米纤维材料:对高效抗菌效果的后处理表面改性

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摘要

The surfaces of electrospun polystyrene (PS) nanofiber materials with encapsulated 1% w/w 5,10,15,20- tetraphenylporphyrin (TPP) photosensitizer were modified through sulfonation, radio frequency (RF) oxygen plasma treatment, and polydopamine coating. The nanofiber materials exhibited efficient photogeneration of singlet oxygen. The postprocessing modifications strongly increased the wettability of the pristine hydrophobic PS nanofibers without causing damage to the nanofibers, leakage of the photosensitizer, or any substantial change in the oxygen permeability of the inner bulk of the polymer nanofiber. The increase in the surface wettability yielded a significant increase in the photo-oxidation of external polar substrates and in the antibacterial activity of the nanofibers in aqueous surroundings. The results reveal the crucial role played by surface hydrophilicity/wettabiliry in achieving the efficient photo-oxidation of a chemical substrate/ biological target at the surface of a material generating O2(~1Δ_g) with a short diffiusion length.
机译:封装有1%w / w 5,10,15,20-四苯基卟啉(TPP)光敏剂的电纺聚苯乙烯(PS)纳米纤维材料的表面通过磺化,射频(RF)氧等离子体处理和聚多巴胺涂层进行了改性。纳米纤维材料表现出有效的单线态氧光生。后处理改性极大地提高了原始疏水性PS纳米纤维的润湿性,而不会引起纳米纤维的损坏,光敏剂的泄漏或聚合物纳米纤维内部本体的透氧性的任何实质性变化。表面润湿性的提高导致外部极性基材的光氧化作用以及水性环境中纳米纤维的抗菌活性显着提高。结果揭示了表面亲水性/增湿性在产生扩散长度短的O2(〜1Δ_g)的材料表面实现化学底物/生物靶标的有效光氧化过程中所起的关键作用。

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