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Visible-Light Active Titanium Dioxide Nanomaterials with Bactericidal Properties

机译:具有杀菌特性的可见光活性二氧化钛纳米材料

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摘要

This article provides an overview of current research into the development, synthesis, photocatalytic bacterial activity, biocompatibility and cytotoxic properties of various visible-light active titanium dioxide (TiO ) nanoparticles (NPs) and their nanocomposites. To achieve antibacterial inactivation under visible light, TiO NPs are doped with metal and non-metal elements, modified with carbonaceous nanomaterials, and coupled with other metal oxide semiconductors. Transition metals introduce a localized d-electron state just below the conduction band of TiO NPs, thereby narrowing the bandgap and causing a red shift of the optical absorption edge into the visible region. Silver nanoparticles of doped TiO NPs experience surface plasmon resonance under visible light excitation, leading to the injection of hot electrons into the conduction band of TiO NPs to generate reactive oxygen species (ROS) for bacterial killing. The modification of TiO NPs with carbon nanotubes and graphene sheets also achieve the efficient creation of ROS under visible light irradiation. Furthermore, titanium-based alloy implants in orthopedics with enhanced antibacterial activity and biocompatibility can be achieved by forming a surface layer of Ag-doped titania nanotubes. By incorporating TiO NPs and Cu-doped TiO NPs into chitosan or the textile matrix, the resulting polymer nanocomposites exhibit excellent antimicrobial properties that can have applications as fruit/food wrapping films, self-cleaning fabrics, medical scaffolds and wound dressings. Considering the possible use of visible-light active TiO nanomaterials for various applications, their toxicity impact on the environment and public health is also addressed.
机译:本文概述了各种可见光活性二氧化钛(TiO)纳米颗粒(NPs)及其纳米复合材料的开发,合成,光催化细菌活性,生物相容性和细胞毒性。为了在可见光下实现抗菌灭活,将TiO NP掺入金属和非金属元素,并用碳纳米材料改性,并与其他金属氧化物半导体耦合。过渡金属在TiO NPs的导带正下方引入了局部d电子态,从而使带隙变窄,并导致光吸收边缘向可见区域的红移。掺杂的TiO NPs的银纳米颗粒在可见光激发下会发生表面等离子体共振,从而导致将热电子注入TiO NPs的导带中,从而产生活性氧(ROS)来杀死细菌。用碳纳米管和石墨烯片对TiO NPs进行改性也可以在可见光照射下有效产生ROS。此外,可以通过形成Ag掺杂的二氧化钛纳米管的表面层来实现具有增强的抗菌活性和生物相容性的整形外科中的钛基合金植入物。通过将TiO NP和Cu掺杂的TiO NP掺入壳聚糖或纺织品基质中,所得的聚合物纳米复合材料表现出优异的抗菌性能,可以用作水果/食品包装膜,自清洁织物,医用支架和伤口敷料。考虑到可见光活性TiO纳米材料可能用于各种应用,还解决了它们对环境和公共健康的毒性影响。

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