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作 者:陶振华[1] 张海丽[2] 韩德新[2] 周雅文[2] 赵华[1] 田福祯[2]
机构地区:[1]天津科技大学生物工程学院,天津工业微生物重点实验室,天津300457 [2]天津科技大学理学院,天津300457
出 处:《功能材料》2007年第A09期3433-3436,共4页Journal of Functional Materials
基 金:天津科技大学重点支持项目(2003ZD-07)
摘 要:采用四氯化钛自生晶种水解法制备了纳米TiO2,通过在水解过程中引入硝酸银制得载银纳米TiO2。对载银前后的纳米TiO2进行了XRD和TEM表征。XRD图谱表明,纳米TiO2属于锐钛矿晶型结构,水解过程中加入硝酸银得到纳米TiO2与氯化银的复合体(AgCl/TiO2)。TEM照片显示,纳米TiO2样品为分散较好的20-30nm之间的粒子,而载银后的复合物粒子明显增大,有轻度的团聚发生。采用抑菌环、悬浮液浊度法测定了载银前后纳米TiO2的抗菌性能,结果表明,AgCl/TiO2抗菌材料对金黄色葡萄球菌有明显的抑菌效果,其最小抑菌浓度为750mg/L。达到日本制定的“银等无机抗菌剂自主规格及其抗菌实验法”规定的〈800mg/L指标。Nano-titania was prepared by spontaneous seed crystal thermo-hydrolysis of industrial aqueous TiCl4 solution, and Ag-embedded nano-titania was synthesized through adding AgNO3 during the process of thermo-hydrolysis of TiCl4. XRD and TEM characterization of these two samples were performed. The XRD results suggest that nano-titania prepared belongs to anatase structure, and the Ag-embedded nano-titania belongs to the complex of nano-titania and AgCl. The TEM pictures illuminates that the particles of titania is about 20-30nm and well dispersed. However, the particles of Ag-embedded nano-titania are obviously bigger than those of pure titania. The antibacterial activity of Ag-embedded nano-titania was studied, and the results suggest that it possess distinct antibacterial ability to staphylococcus aureus with the value of minimal inhibitory concentration (MIC) as 750mg/L, which is smaller than the standard value (800g/L) of inorganic antibacterial in Japan.
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