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Influence of Modified ZnO Quantum Dots and Nanostructures as New Antibacterials

机译:改性ZnO量子点和纳米结构作为新型抗菌药物的影响

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Antibacterial activities of various spherical zinc oxide nanoparticles and nano special morphological structures including quantum dots, nanorod arrays, nanoporous shapes and needle-like crystals had been investigated as new nanomedicine compounds. Also antibacterial activity based on minimal inhibitory concentration and the growth inhibitory zone (well method) was evaluated. ZnO nanostructures were fabricated by novel hydrolysis sol-gel-hydrothermal process followed with rapid quenching as new technique using glycerine, vegetable fatty esters such as coconut, sunflower and Lauric alcohol ethoxylated as organic templates soluble in eco-friendly nanofluids. The results showed that Bacillus anthracis and Pseudomonas aerogenes were extremely sensitive to treatment with unique ZnO nanostructured. Their growth inhibitory zone presented 30 mm and 25 mm inhibition zone with better inhibitory effect compared to the Gentamicin antibiotic standard. ZnO nanostructures had also been indicated to have a wide range of antibacterial activities against both Gram-positive and Gram-negative bacteria especially more effective on (gr+) species using the growth inhibitory zone. We could design and make significant formulations of fatty acids and esters-capped ZnO quantum dots nanofluids which created high promising agents for controlling Anthrax, Staphylococcus epidermidis and their influences in antimicrobial properties with low cost for future.
机译:作为新的纳米药物化合物,已研究了各种球形氧化锌纳米粒子和包括量子点,纳米棒阵列,纳米孔形状和针状晶体在内的纳米特殊形态结构的抗菌活性。还基于最小抑制浓度和生长抑制区(孔法)评估了抗菌活性。 ZnO纳米结构是通过新的水解溶胶-凝胶-水热工艺,然后快速淬火作为新技术制造的,其中使用甘油,植物脂肪酯(如椰子,向日葵和乙氧基化的月桂醇)作为可溶于环保纳米流体的有机模板。结果表明,炭疽杆菌和产气假单胞菌对独特的ZnO纳米结构的处理极为敏感。与庆大霉素抗生素标准品相比,它们的生长抑制区呈现出30 mm和25 mm的抑制区,具有更好的抑制作用。 ZnO纳米结构还被证明对革兰氏阳性和革兰氏阴性细菌均具有广泛的抗菌活性,特别是对使用生长抑制区的(gr +)物种更有效。我们可以设计和制造脂肪酸和酯基封端的ZnO量子点纳米流体的重要配方,从而为控制炭疽,表皮葡萄球菌及其对抗菌性能的影响创造了高前景的试剂,并且具有低成本的未来前景。

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