2017
DOI: 10.1088/1757-899x/263/2/022012
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Biosynthesis of Copper Oxide nanoparticles from Drypetes sepiaria Leaf extract and their catalytic activity to dye degradation

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Cited by 48 publications
(20 citation statements)
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“…The spectrum of CLE-CuONPs (Figure 4A ii) shows that the appearance of sharp bands at 3572, 3488 and 2926 cm −1 are likely due to stretching of -OH, -NH and CHO groups associated with the skeletons of CLE bio-actives [38]. Changes in the sharp peak at 1628 cm −1 in the CLE-CuONPs spectrum justify the role of -C=O stretch of ester and amide groups in NP formation (Figure 4A i,ii) [39]. Similarly, the formation of a series of sharp peaks between 1152 and 611 cm −1 was described in Supplementary Data (Table S1).…”
Section: Cu 2+ Reduction Mechanismmentioning
confidence: 82%
“…The spectrum of CLE-CuONPs (Figure 4A ii) shows that the appearance of sharp bands at 3572, 3488 and 2926 cm −1 are likely due to stretching of -OH, -NH and CHO groups associated with the skeletons of CLE bio-actives [38]. Changes in the sharp peak at 1628 cm −1 in the CLE-CuONPs spectrum justify the role of -C=O stretch of ester and amide groups in NP formation (Figure 4A i,ii) [39]. Similarly, the formation of a series of sharp peaks between 1152 and 611 cm −1 was described in Supplementary Data (Table S1).…”
Section: Cu 2+ Reduction Mechanismmentioning
confidence: 82%
“…The peaks at 685, 607 and 484 cm À1 were ascribed to the stretching vibration of the C-OH bond. 27,28 Thus, the FT-IR results suggested the formation of the pm-CuO NPs. Further, in the zeta-potential analysis of pm-CuO NPs, a negative potential of À21.5 mV was displayed (see ESI Fig.…”
Section: Structural Optical and Morphological Characterization Of The Pm-cuo Npsmentioning
confidence: 93%
“…Deep blue colour of the copper nitrate solution changes to dark brownish colour. Dark brownish colour indicates the formation of CuO nanoparticles [11]. Another study reported the synthesis of CuO nanoparticles by reacting plant extract with CuSO 4 solution.…”
Section: Discussionmentioning
confidence: 99%
“…Of the available processes, biosynthesis of nanomaterials using green reducing agents and plants has been reported [10]. Biosynthesis process have a lot of advantages in the synthesis of nanoparticles due to cost-effective, eco-friendly and better alternative to physical and chemical methods [11]. Moreover, other chemical methods employ toxic chemicals, additives or capping agents and non-polar solvents in the synthesis procedure and are thus not suitable for their application in clinical and biomedical fields.…”
Section: Introductionmentioning
confidence: 99%