Department of Chemistry, Universidad de los Andes, Cra1E No 18A-10, Bogota, Colombia.
ACS Appl Mater Interfaces. 2010 Sep;2(9):2547-52. doi: 10.1021/am100370y.
This study presents the first report on enhanced bacterial inactivation of E. coli by RF-plasma pretreated cotton with high-surface-area CuO powders compared with nonpretreated cotton textiles. The high-surface-area CuO (65 m/g) powder was fully characterized. The E. coli inactivation proceeded in the dark and was accelerated under visible and sunlight irradiation even at very low levels of visible light irradiation. The effect the RF-plasma pretreatment of the cotton on the binding of CuO, applied light dose, the amount of CuO loading and initial E. coli concentration on the inactivation kinetics of E. coli is reported in detail.
本研究首次报告了与未预处理的棉纺织品相比,经射频等离子体预处理的高比表面积 CuO 粉末处理的棉花对大肠杆菌的杀菌效果显著增强。高比表面积 CuO(65 m²/g)粉末进行了充分的特性描述。大肠杆菌的失活动力学实验在黑暗中进行,在可见光和阳光照射下甚至在极低水平的可见光照射下都会加速反应。报告详细说明了射频等离子体预处理对棉纤维结合 CuO 的影响、光照剂量、CuO 负载量和初始大肠杆菌浓度对大肠杆菌失活动力学的影响。