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Green synthesis of copper oxide nanoparticles using Juglans regia leaf extract and assessment of their physico-chemical and biological properties

机译:juglans Regia叶提取物的氧化铜纳米粒子的绿色合成及其物理化学和生物学性能评估

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摘要

Copper oxide nanoparticles (CuO NPs) were green synthesized using walnut leaf extract. Effects of three synthesis parameters namely;; amount copper salt (1-4 g), amount of walnut leaf extract (10-40 mL) and furnace temperature (300-500°C), on the particle size as manifested in broad absorption peak (A_(max), nm), concentration (absorbance), antioxidant activity and antibacterial activity as minimum inhibitory concentration (MIC) of the fabricated CuO NPs were studied using response surface methodology, based on Box behnken experimental design. The spherical and crystalline monodispersed fabricated CuO NPs with mean particle size of 80 nm, were achieved using optimum synthesis parameters including 1 g copper salt, 14 mL walnut leaf extract and 490°C of furnace temperature. The fabricated CuO NPs at these conditions had maximum antioxidant activity of 83.64% and minimum MIC value of 1.78% w/v against E. coli, with A and absorbance values of 226 nm, 4.44% a.u., max respectively.
机译:使用核桃叶提取物合成氧化铜纳米颗粒(CuO NPS)。 三种合成参数的影响即;; 铜盐(1-4g),核桃叶萃取物(10-40ml)和炉温(300-500°C)的量,颗粒尺寸如宽吸收峰(a_(max),nm)。 基于盒Behnken实验设计,研究了作为制造的CuO NPS的最小抑制浓度(MIC)的浓度(吸光度),抗氧化活性和抗菌活性。 使用1g铜盐,14ml核桃叶提取物和490℃的炉温,实现具有80nm的平均粒径为80nm的平均粒径的球形和结晶的单分散。 这些条件下的制造的CuO NPS具有83.64%的最大抗氧化活性和对大肠杆菌的1.78%w / v的最小MIC值,分别为226nm,4.44%a.u.,max的吸光度值。

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