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Influence of Preparation Procedure on Physicochemical and Antibacterial Properties of Titanate Nanotubes Modified with Silver

机译:用银改性钛酸盐纳米管物理化学和抗菌性能的影响

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摘要

Silver nanoparticles (NPs) are effective antibacterial agents; however, aggregation of NPs and uncontrolled release of Ag+ affect their efficiency and may pose a risk to the environment. To overcome these disadvantages, immobilization of Ag onto titanate nanotubes (TNTs) was investigated. This paper describes the physicochemical and antibacterial properties of silver incorporated titanate nanotubes (Ag/TNTs) prepared using five procedures and containing different Ag amounts (0.11−30.85 wt.%). The methods were (i) sol-gel followed by a hydrothermal process; (ii) photodeposition under ambient conditions; (iii) photodeposition under an inert atmosphere; (iv) NaBH4 reduction; and (v) electroless deposition after activation of TNTs with Sn2+. Depending on the synthesis procedure, the presence of metallic Ag NPs, AgO or AgCl was observed. The electroless method led to an additional deposition of SnO2 NPs. The antibacterial properties of Ag/TNTs were analyzed as a function of Ag content and released against Escherichia coli and Staphylococcus epidermidis. The best bactericidal properties exhibited Ag/TNTs prepared through the photodeposition process due to the higher interaction of exposed Ag NPs with bacteria. An increase of Ag loading resulted in improvement of antibacterial activity of Ag/TNTs although no direct correlation between silver content or release and inhibition of bacterial growth was found.
机译:银纳米颗粒(NPS)是有效的抗菌剂;然而,NPS的聚合和AG +的不受控制释放影响其效率,并且可能对环境产生风险。为了克服这些缺点,研究了Ag在钛酸盐纳米管(TNT)上的固定化。本文介绍了使用五种方法制备的银掺入钛酸酯纳米管(Ag / TNT)的物理化学和抗菌性质,并含有不同的Ag量(0.11-30.85重量%)。该方法是(i)溶胶 - 凝胶,然后是水热过程; (ii)环境条件下的光致沉积; (iii)在惰性气氛下的光致沉积; (iv)纳米4减少; (v)用SN2 +激活TNT后的无电沉积。取决于合成程序,观察到金属Ag NPS的存在或AgCl。无电方法导致SNO2 NPS的额外沉积。分析了Ag / TNT的抗菌性能作为Ag含量的函数,并释放出对大肠杆菌和葡萄球菌表皮。由于暴露的Ag NP与细菌的较高相互作用,最佳的杀菌性能表现出通过光致沉积过程制备的Ag / TNT。虽然没有发现银含量或释放与细菌生长的直接相关性,所导致Ag / TNT的抗菌活性的增加导致Aglaplation的增加。

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