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通过冰块法合成用于光灭活的新型氧化锌 。 (原文结尾不完整)

Novel synthesis of ZnO by Ice-cube method for photo-inactivation of .

作者信息

Dhandapani Perumal, Devanesan Sandhanasamy, Narenkumar Jayaraman, Maruthamuthu Sundaram, AlSalhi Mohamad S, Rajasekar Aruliah, Ahamed Anis

机构信息

Corrosion and Material Protection Division, CSIR-Central Electrochemical Research Institute, Karaikudi 630006, India.

Environmental Molecular Microbiology Research Laboratory, Department of Biotechnology, Thiruvalluvar University, Serkkadu, Vellore 632115, Tamil Nadu, India.

出版信息

Saudi J Biol Sci. 2020 Apr;27(4):1130-1138. doi: 10.1016/j.sjbs.2020.02.005. Epub 2020 Feb 11.

Abstract

The ZnO particle with varieties of morphology was prepared from ice-cube of zinc ammonium complex at boiling water surface in 1 min induction of thermal shock. The zinc ammonium complex in ice cube was developed using zinc acetate and biologically activated ammonia in 1 hr and kept in the freezer. Temperature gradient behaviour of the water medium during thermal shock was captured by the thermal camera and thermometer. Morphology study revealed a variety of flower-like ZnO particles with variable size from 1.0 to 2.5 μm. Further, ZnO particle morphologies were tuned by adding trisodium citrate and hexamine to obtain uniform spherical (2-3 μm) and flower (3-4 μm) shapes, respectively. XRD patterns revealed that all ZnO samples are of a hexagonal structure. Photocatalytic inactivation of has been investigated using various particle morphologies of ZnO in an aqueous solution/overcoated glass slide under sunlight. The photo-inactivation of by ZnO particles in suspension condition was better when compared to a coated glass slide method. AFM study confirmed the destruction of bacterial cell wall membrane by the photocatalytic effect. The particles morphology of photocatalyst is well dependent on antibacterial activity under sunlight.

摘要

通过在沸水表面对锌铵络合物冰块进行1分钟热冲击诱导,制备了具有多种形态的ZnO颗粒。冰块中的锌铵络合物是用醋酸锌和生物活化氨在1小时内制备的,并保存在冰箱中。热冲击期间水介质的温度梯度行为由热成像仪和温度计记录。形态学研究表明,有各种尺寸在1.0至2.5μm之间变化的花状ZnO颗粒。此外,通过添加柠檬酸钠和六胺来调节ZnO颗粒的形态,分别获得均匀的球形(2 - 3μm)和花形(3 - 4μm)。XRD图谱表明所有ZnO样品均为六方结构。在阳光照射下,在水溶液/包覆玻璃载玻片上使用各种形态的ZnO研究了[具体物质未给出]的光催化失活。与包覆玻璃载玻片方法相比,悬浮条件下ZnO颗粒对[具体物质未给出]的光失活效果更好。原子力显微镜研究证实了光催化作用对细菌细胞壁膜的破坏。光催化剂的颗粒形态在阳光下对抗菌活性有很大依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a06/7105696/c9886935b14a/gr1.jpg

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