Laboratory for Environmental Research, University of Nova Gorica, Vipavska 13, 5000, Nova Gorica, Slovenia.
Appl Microbiol Biotechnol. 2014 Mar;98(5):1925-36. doi: 10.1007/s00253-013-5464-y. Epub 2014 Jan 3.
Photocatalytic coatings are considered sustainable materials as they only need sunlight for their activation and regeneration. Some photocatalytic disinfecting coatings are already commercialized, but many more are still in the developmental stage. Efficient and reliable analytical methodologies for testing the antimicrobial effects of photocatalytic coatings should therefore be used and further developed (1) to avoid inactive or unstable final products, (2) to allow fast, reproducible, and inexpensive antimicrobial activity measurements, and (3) to reflect real environmental conditions and challenges for these materials. Aiming to improve the existing methodologies of antimicrobial testing, this mini review summarizes and discusses the testing parameters and procedures in this expanding research field, including research on antimicrobial activity of photocatalytic coatings for different applications, i.e., self-cleaning/disinfecting coatings (films) and photocatalytic coatings for water and air treatment/disinfection.
光催化涂层被认为是可持续的材料,因为它们只需要阳光来激活和再生。一些光催化消毒涂层已经商业化,但还有更多的仍处于开发阶段。因此,应该使用和进一步开发高效可靠的分析方法来测试光催化涂层的抗菌效果(1)避免无活性或不稳定的最终产品,(2)允许快速、可重复和廉价的抗菌活性测量,以及(3)反映这些材料的实际环境条件和挑战。为了改进现有的抗菌测试方法,本综述总结和讨论了这个不断发展的研究领域中的测试参数和程序,包括不同应用的光催化涂层抗菌活性的研究,即自清洁/消毒涂层(薄膜)和水和空气处理/消毒的光催化涂层。