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Biosynthesis of Copper Oxide nanoparticles from Drypetes sepiaria Leaf extract and their catalytic activity to dye degradation

机译:从Droceetes Sepiaria叶提取物中生物合成氧化铜纳米粒子及其催化活性以染料降解

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The synthesis of metal nanoparticles through a green method is a rapid biogenic and offers few advantages over the common chemical and physical procedures, as it is an easy and fast, eco-friendly and does not involve any costly chemicals as well as hazardous chemicals. In this study, we report synthesis of CuO NPs by using Drypetes sepiaria Leaf extract (DSLE). The synthesized CuO NPs was characterization using different technique such as UV, IR, XRD, and TEM. The formation of CuO NPs was confirmed by Surface Plasmon Resonance (SRP) at 298 nm using UV-Vis spectroscopy. Crystallinity of CuO NPs was confirmed by powder XRD and the characteristic functional groups of synthesised CuO NPs were identified by FTIR spectroscopy. The size and shape of the synthesized CuO NPs was determined by transmission electron microscopy (TEM). In addition, we performed photocatalytic activity to examine the photocatalytic degradation efficiency of CuO NPs to Congo Red. The colloidal solutions of CuO NPs showed good catalytic activity.
机译:通过绿色方法合成金属纳米颗粒是一种快速生物生物,优缺于普通的化学和物理程序,因为它是一种简单快捷,环保的并且不涉及任何昂贵的化学品以及危险化学品。在这项研究中,我们通过使用Drocetes Sepiaria叶提取物(DSLE)来报告Cuo NPS的合成。合成的CuO NPS使用不同的技术进行表征,例如UV,IR,XRD和TEM。使用UV-Vis光谱法通过298nm的表面等离子体共振(SRP)确认CuO NPS的形成。 CuO NPS的结晶度通过粉末XRD确认,通过FTIR光谱鉴定合成CuO NP的特征官能团。通过透射电子显微镜(TEM)测定合成的CUO NP的尺寸和形状。此外,我们进行了光催化活性,以检查CuO NPS到刚果红色的光催化降解效率。 CuO NPS的胶体溶液显示出良好的催化活性。

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