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Synthesis, characterization, enhanced dielectric and antimicrobial properties of WxCu1-xO nanostructures

机译:WXCu1-XO纳米结构的合成,表征,增强介质和抗微生物性质

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摘要

Herein, we report the chemical synthesis of WxCu1-xO nanostructures with varying concentration of dopant (x = 0.00, 0.01, 0.03 and 0.05). The as-obtained doped CuO nanostructures have been investigated to evaluate their physio-chemical properties like crystallinity, morphology, optical features and infrared active modes. The dielectric study shows that doping induces a significant increase in real permittivity. In addition, the doped nanostructures also show potential towards inhibition of pathogenic microbes. The antimicrobial activity of prepared nanostructures determined against four different bacterial strains shows that W doped CuO nanostructures possess a strong antimicrobial activity against S. aureus, and K. pneumoniae and an intermediate activity against E. coli and C. albicans. These finding recognize the use of W doped CuO nanostructures in permittivity materials and bacterial disinfection nanomaterials.
机译:在此,我们报告了具有不同掺杂剂浓度的WXCu1-XO纳米结构的化学合成(x = 0.00,0.01,0.03和0.05)。 已经研究了所得掺杂的CuO纳米结构以评估它们的物理化学性质,如结晶度,形貌,光学特征和红外活性模式。 介电研究表明,掺杂诱导实际介电常数显着增加。 另外,掺杂的纳米结构还显示出抑制致病微生物的潜力。 针对四种不同的细菌菌株测定的制备纳米结构的抗微生物活性表明,W掺杂的CuO纳米结构具有针对金黄色葡萄球菌的强烈抗微生物活性,K.Pneumoniae和针对大肠杆菌和C. albicans的中间活性。 这些发现识别使用W掺杂CuO纳米结构在介质材料和细菌消毒纳米材料中的用途。

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