研究目的
Investigating the synthesis, characterization, and antibacterial efficacy of rod-shaped cuprous oxide nanoparticles using laser ablation technique.
研究成果
The synthesized Cu2O NPs demonstrated significant antibacterial properties against S. aureus, with MIC and MBC values of 120 and 140 μg/L, respectively. The rod-shaped Cu2O NPs showed higher bactericidal efficacy compared to CuO NPs, suggesting their potential as stable antimicrobial agents for clinical, medical, and environmental applications.
研究不足
The study focuses on Gram-positive bacteria (S. aureus) and does not explore the effects on Gram-negative bacteria. The stability of Cu-NPs in different environmental conditions and their long-term antibacterial efficacy were not investigated.
1:Experimental Design and Method Selection:
Pulsed laser ablation of a solid copper target in liquid media was used to synthesize colloidal oxide copper nanoparticles (Cu2O and CuO NPs) with and without polyethylene glycol (PEG).
2:Sample Selection and Data Sources:
Copper target (99.9% purity) was purchased from Johnson Matthey. Double distilled water and PEG 400 were used for the synthesis.
3:9% purity) was purchased from Johnson Matthey. Double distilled water and PEG 400 were used for the synthesis. List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: Nd:YAG laser (1064 nm, 40 mJ/pulse), Perkin Elmer Lambda 35 dual beam spectrophotometer, FTIR spectrometer (ABB, Bomem Inc.), Proto A-XRD diffractometer, high-resolution transmission electron microscope (Tecnai G2-20, FEI Company), Inductively Coupled Plasma Mass Spectrometer (ICP-MS) (Thermo Fisher Scientific).
4:Experimental Procedures and Operational Workflow:
Laser ablation was performed at room temperature and atmospheric pressure. The laser beam was focused on the copper target immersed in distilled water or PEG solution. The synthesized NPs were characterized using UV–VIS, XRD, TEM, and ATR-FTIR techniques.
5:Data Analysis Methods:
The optical band gap was estimated using absorption data. XRD peaks were analyzed using Debye–Scherrer’s formula for crystalline size determination. Antibacterial efficacy was assessed using disc diffusion and growth kinetics methods.
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Perkin Elmer Lambda 35 dual beam spectrophotometer
Lambda 35
Perkin Elmer
Used for recording UV–VIS absorption spectra of the synthesized NPs.
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High-resolution transmission electron microscope
Tecnai G2-20
FEI Company
Used for imaging the size and shape of the synthesized NPs.
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Nd:YAG laser
Used for the synthesis of colloidal oxide copper nanoparticles.
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FTIR spectrometer
ABB, Bomem Inc.
Used for confirming the presence of Cu2O and CuO NPs as well as PEG capping species.
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Proto A-XRD diffractometer
A-XRD
Proto
Used for X-ray diffraction analysis of the synthesized NPs.
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Inductively Coupled Plasma Mass Spectrometer
Thermo Fisher Scientific
Used for analyzing the synthesized copper concentration.
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