首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Cadmium selenide quantum dot-zinc oxide composite: Synthesis, characterization, dye removal ability with UV irradiation, and antibacterial activity as a safe and high-performance photocatalyst
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Cadmium selenide quantum dot-zinc oxide composite: Synthesis, characterization, dye removal ability with UV irradiation, and antibacterial activity as a safe and high-performance photocatalyst

机译:硒化镉量子点 - 氧化锌复合材料:合成,表征,染料去除能力,紫外线照射,以及抗菌活性作为安全和高性能的光催化剂

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In this paper, cadmium selenide quantum dot (CdSe QD)-zinc oxide (ZnO) nanocomposite (CdSe QD-ZnO) was synthesized and characterized and its photocatalytic dye degradation ability was investigated. The XRD, FTIR, UV-Vis, AFM and SEM were used to characterize the synthesized nanomaterials. The correlation coefficient of pseudo-first-order kinetic reaction is 0.98. The rate constants from 20 to 30 mg/L of pollutant concentrations was reduced by the order of 0.9. The temporal change in dye concentration reduces as the photocatalyst dosage increase up to optimum value of 0.04 g/L, then beyond that value the increase in the dosage becomes detrimental. Antibacterial activity of the synthesized nanocomposite as a safe photocatalyst was studied in details. Antibacterial activity of as prepared samples was also examined against Escherichia colt (E. coli). For in vitro study, Human umbilical vein endothelial cells (HUVEC) was utilized for the modeling of toxicity of each as prepared samples as representative of human normal cell line. In vivo study was conducted using leeches (Hirudo orientalis). In the presence of ethanol as hydroxyl radical (OH center dot) scavenger, the removal efficiency significantly depresses compared to the di methyl sulfoxide as electron scavengers suggesting OH "possesses a major role in photocatalytic dye (Basic Red 18: BR18) decolorization. By coupling with CdSe QD, the zone of inhibition was greatly increased suggesting the size dependent inactivation of E. coli. The results presented that the composite had no significant effect on the proliferation of HUVEC normal cells. In addition, the treatment of cells with ZnO and the composite does not impact on the cell morphology.
机译:本文合成硒化镉量子点(CDSE QD)氧化辛(CdSe QD)纳米复合(CdSe QD-ZnO),研究了其光催化染料降解能力。使用XRD,FTIR,UV-VI,AFM和SEM来表征合成的纳米材料。伪第一阶动力学反应的相关系数为0.98。从20至30mg / L污染物浓度的速率常数约为0.9。染料浓度的时间变化随着光催化剂剂量的增加而降低0.04g / L的最佳值,那么超出该值的剂量增加变得有害。研究了合成纳米复合物作为安全光催化剂的抗菌活性。还检查了作为制备样品的抗菌活性,用于反对大肠杆菌(大肠杆菌)。对于体外研究,人脐静脉内皮细胞(HUVEC)用于毒性的毒性模拟,作为制备样品作为人正常细胞系代表。在体内研究使用水蛭(Hirudo Orientalis)进行。在存在乙醇作为羟基自由基(OH中心点)清除剂时,与暗示OH“暗示OH”的二甲基亚砜相比,去除效率显着下降,哦“具有光催化染料(碱性红色18:BR18)脱色。通过耦合随着CDSE QD,抑制区大大提高了,表明大肠杆菌的尺寸依赖性灭活。结果表明,复合材料对Huvec正常细胞的增殖没有显着影响。此外,用ZnO和ZnO治疗细胞复合材料不会影响细胞形态。

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