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The Effect of Calcination Temperature and Solvent on the Synthesis of CuO Nanoparticles and Assessment as an anti-Leishmania Agent

机译:煅烧温度和溶剂对CuO纳米粒子合成及抗Leishmania剂的评估的影响

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Nanoparticles based materials are emerging field that being studied as an alternative solution to control and destroy microorganisms which are being resistance to conventional drugs. Eco-friendly, simple and costeffective co-precipitation method was used to synthesize CuO NPs. The effect of the calcination temperature (100, 250 and 400°C)and solvent (water and ethanol) on the synthesis process of nanoparticles was studied. UV-VIS spectroscopy was used to measure the absorption spectra of CuO NPs. The functional groups and the interaction between copper and oxygen were detected by FTIR. The size (18-33 nm), roughness (2-8 nm) and purity of synthesized CuO NPs were examined by AFM and EDX. CuO NPs were pure as showed by the spectra of EDX with weight percentage for O (19-28wt%) and Cu ( 64-77wt %). Different volumes (12.5 ul,25 u1,50 u1,75 ul,100 ul and 150 ul) of CuO NPs with 150 ug/ml were used to evaluate their antimicrobial activity against Leishmania (Leishmania donovani and Leishmania Tropica). It has been found that as the calcination temperature increases, the size of nanoparticle increases due to atomic diffusion. The size of nanoparticles at the same calcination temperature is smaller when using ethanol as a solvent instead of water due to the difference in the alcoholic chain. Inhibition activity against both types of leishmania was found, as well as it was correlated with the size and concentrations of nanoparticles.
机译:基于纳米颗粒的材料是新兴领域,其作为控制和破坏抗常规药物抗性的微生物的替代溶液。使用环保,简单且成本的共析出方法合成CuO NPS。研究了煅烧温度(100,250和400℃)和溶剂(水和乙醇)对纳米颗粒的合成过程的影响。 UV-Vis光谱法用于测量CuO NPS的吸收光谱。通过FTIR检测官能团和铜和氧之间的相互作用。通过AFM和EDX检查合成CuO NP的尺寸(18-33nm),粗糙度(2-8nm)和纯度。 CuO NPS纯度如EDX的光谱显示为O(19-28wt%)和Cu(64-77wt%)的重量百分比。使用150ug / mL的Cuo NPS(12.5μl,25u1,50u1,75ul,100ul和150ul)的不同体积(12.5μl,25u1,50u1,75ul,100ul和150ul)用于评估它们对Leishmania(Leishmania Donovani和Leishmania Tropica)的抗微生物活性。已经发现,随着煅烧温度的增加,纳米粒子的尺寸由于原子扩散而增加。在相同煅烧温度下纳米颗粒的尺寸较小,当使用乙醇作为溶剂而不是由于醇链的差异而不是水。发现针对两种类型的Leishmania的抑制活性,以及​​与纳米颗粒的尺寸和浓度相关的抑制活性。

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