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Bacterial Biofilm Characterization and Microscopic Evaluation of the Antibacterial Properties of a Photocatalytic Coating Protecting Building Material

机译:细菌生物膜表征和微观评价光催化涂层保护建筑材料的抗菌性能

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Use of photocatalytic paint-like coatings may be a way to protect building materials from microbial colonization. Numerous studies have shown the antimicrobial efficiency of TiO 2 photocatalysis on various microorganisms. However, few have focused on easy-to-apply solutions and on photocatalysis under low irradiance. This paper focuses on (a) the antibacterial properties of a semi-transparent coating formulated using TiO 2 particles and (b) the microscopic investigations of bacterial biofilm development on TiO 2 -coated building materials under accelerated growth conditions. Results showed significant antibacterial activity after few hours of testing. The efficiency seemed limited by the confinement of the TiO 2 particles inside the coating binder. However, a pre-irradiation with UV light can improve efficiency. In addition, a significant effect against the formation of a bacterial biofilm was also observed. The epifluorescence approach, in which fluorescence is produced by reflect rather than transmitted light, could be applied in further studies of microbial growth on coatings and building materials.
机译:使用光催化涂料的涂料涂料可以是保护材料免受微生物定植的方式。许多研究表明了TiO 2光催化在各种微生物上的抗微生物效率。然而,很少有专注于易于应用的解决方案和低辐照下的光催化。本文重点介绍(a)使用TiO 2颗粒和(b)在加速生长条件下的TiO 2涂层建筑材料对细菌生物膜发育的微观研究的半透明涂层的抗菌性质。结果在测试几小时后显示出显着的抗菌活性。效率似乎受到涂料粘合剂内的TiO 2颗粒的限制。然而,具有UV光的预照射可以提高效率。此外,还观察到对形成细菌生物膜的形成显着影响。通过反射而不是透射光产生荧光的渗流性方法可以应用于涂层和建筑材料上的微生物生长的进一步研究。

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