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Modification of polyethersulfone incorporated with polyvinylpyrrolidone - iodine via phase inversion and ultraviolet photo grafting for antibacterial applications

机译:相转变和紫外光接枝改性聚乙烯吡咯烷酮-碘结合的聚醚砜用于抗菌应用。

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摘要

Incorporation of antibacterial agents into polymeric membrane is one the widely studied surface modification. Polyethersulfone (PES) membrane incorporated with polyvinylpyrrolidone-iodine (PVP-I) were prepared using phase inversion and UV induced photo-grafting techniques. The modified PES-PVP-I membranes were characterized in term of gravimetric analysis, FT-IR analysis, FESEM analysis, water flux, contact angle, porosity measurement and antibacterial effect against Escherichia coli (E.coli) and Bacillus subtilis (B.subtilis). The high water flux indicated by PES-4 and PES-7 show an improvement by the addition of PVP-I by 52 % to 62% higher compared to original PES membrane. For the UV method, the water flux decline with the increasing of irradiation time by 31 to 35% compared to the commercial original PES membrane. PES-PVP-I membranes with 10 wt% of iodine concentration developed by phase inversion and UV photo-grafting show strong antibacterial properties using halo zone test. The highest inhibition zone of PES-PVP-I membranes produced using UV photo-grafting and phase inversions against E.coli were 2.30cm2 and 1.88cm2 and against B.subtilis were 0.41cm2 and 0.48cm2. The results indicated that both methods used were favorable towards antibacterial properties with high inhibition zone and as well as in the improvement in water flux, contact angle and porosity of PES-PVP-I membranes compared to the original PES. This study shows that PES-PVP-I membrane suitable to be used in wide variety of antibacterial applications.
机译:将抗菌剂掺入聚合物膜是广泛研究的表面改性方法之一。使用相转化和紫外线诱导的光接枝技术制备了掺有聚乙烯吡咯烷酮-碘(PVP-1)的聚醚砜(PES)膜。通过重量分析,FT-IR分析,FESEM分析,水通量,接触角,孔隙率测量以及对大肠杆菌(E.coli)和枯草芽孢杆菌(B.illus subtilis)的抗菌作用对改性的PES-PVP-1膜进行了表征。 )。与原始PES膜相比,PES-4和PES-7指示的高水通量显示出通过添加PVP-1提高52%至62%的改善。对于紫外线法,与商业化的原始PES膜相比,水通量随照射时间的增加而下降31%至35%。通过晕圈试验,通过相转化和紫外光接枝形成的碘浓度为10 wt%的PES-PVP-1膜显示出很强的抗菌性能。用UV光接枝和反相转化产生的PES-PVP-I膜对大肠杆菌的最高抑制区为2.30cm2和1.88cm2,对枯草芽孢杆菌为0.41cm2和0.48cm2。结果表明,与原始PES相比,所使用的两种方法均有利于具有高抑菌圈的抗菌性能,以及改善PES-PVP-1膜的水通量,接触角和孔隙率。这项研究表明,PES-PVP-1膜适合用于多种抗菌应用。

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    Devanai Kannan;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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