Eye Center, Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou 310009, China.
Nanoscale. 2019 May 9;11(18):8680-8691. doi: 10.1039/c9nr01833f.
Nanomaterials and nanotechnologies have been expected to provide innovative platforms for addressing antibacterial challenges, with potential to even deal with bacterial infections involving drug-resistance. The current review summarizes recent progress over the last 3 years in the field of antibacterial nanomaterials with a photothermal conversion effect. We classify these photothermal nanomaterials into four functional categories: carbon-based nanoconjugates of graphene derivatives or carbon nanotubes, noble metal nanomaterials mainly from gold and silver, metallic compound nanocomposites such as copper sulfide and molybdenum sulfide, and polymeric as well as other nanostructures. Different categories can be assembled with each other to enhance the photothermal effects and the antibacterial activities. The review describes their fabrication processes, unique properties, antibacterial modes, and potential healthcare applications.
纳米材料和纳米技术有望为解决抗菌挑战提供创新平台,甚至有可能应对涉及耐药性的细菌感染。本综述总结了过去 3 年中具有光热转换效应的抗菌纳米材料领域的最新进展。我们将这些光热纳米材料分为四大功能类别:石墨烯衍生物或碳纳米管的碳基纳米复合物、主要来自金和银的贵金属纳米材料、硫化铜和硫化钼等金属化合物纳米复合材料,以及聚合物和其他纳米结构。不同类别可以相互组装,以增强光热效应和抗菌活性。本文描述了它们的制造工艺、独特性质、抗菌模式以及潜在的医疗保健应用。