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新型 BiOBrI 纳米结构的开发具有显著的暗相杀菌活性。

Development of novel BiOBrI nanostructures with remarkably High dark phase bactericidal activities.

机构信息

Department of Biotechnology, Sir J. C. Bose Technical Campus, Kumaun University, Bhimtal, Uttarakhand, 263136, India.

Department of Chemistry, D.S.B. Campus, Kumaun University, Nainital, Uttarakhand, 263002, India.

出版信息

Colloids Surf B Biointerfaces. 2021 Mar;199:111558. doi: 10.1016/j.colsurfb.2021.111558. Epub 2021 Jan 6.

Abstract

Semiconductor materials with promising photocatalytic activities are being developed for numerous applications including their use in the development of antibacterial products. However, the light may not be available everywhere, which restrict the use of semiconductor photocatalytic materials in real applications. In this area, we report a novel nanostructure of BiOBrI to show enormously high bactericidal activities even at dark. We used a solution based single step method at room temperature to produce highly porous and crystalline BiOBrI (x = 0-1) nanostructures. Next, the developed materials were thoroughly characterized by different analytical techniques, such as FESEM, XRD, XPS, etc. To evaluate the bactericidal activities Escherichia coli (gram-negative bacteria) and Bacillus subtilis (gram-positive bacteria) were selected. Interestingly we found that the solid solutions exhibited high potential towards both the bacteria and among them, BiOBrI showed extremely high efficiencies even at dark. Due to their semiconductor behavior, the materials have shown higher activities in the presence of any light source. The knowledge about the behavior of these unique materials revels a new area of research and would certainly help to find out the solution for ever-increasing environmental issues.

摘要

具有有前途的光催化活性的半导体材料正在被开发用于众多应用,包括用于开发抗菌产品。然而,光可能并非无处不在,这限制了半导体光催化材料在实际应用中的使用。在这一领域,我们报告了一种新型 BiOBrI 纳米结构,即使在黑暗中也表现出极高的杀菌活性。我们使用基于溶液的一步法在室温下制备了高度多孔和结晶的 BiOBrI(x = 0-1)纳米结构。然后,使用不同的分析技术,如 FESEM、XRD、XPS 等对所开发的材料进行了彻底的表征。为了评估杀菌活性,选择了大肠杆菌(革兰氏阴性菌)和枯草芽孢杆菌(革兰氏阳性菌)。有趣的是,我们发现固溶体对两种细菌都具有很高的潜力,其中 BiOBrI 即使在黑暗中也表现出极高的效率。由于它们的半导体性质,这些材料在任何光源存在下都显示出更高的活性。对这些独特材料的行为的了解揭示了一个新的研究领域,肯定有助于找到解决日益严重的环境问题的方法。

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