Microwave-assisted versus conventional green synthesis of CuO nanoparticles: A DFT-guided structure–property–performance relationship

CuO nanoparticles were synthesized using Clerodendron viscosum leaf extract through conventional green synthesis and microwave-assisted green synthesis, and their structural, electronic, photocatalytic, antibacterial, and cytotoxic properties were systematically investigated using experimental characterization and DFT + U calculations. First-principles calculations confirmed monoclinic CuO as an indirect band-gap semiconductor with a GGA + U band gap of 0.753 eV, while scissors-corrected optical analysis provided insights into its electronic and optical behavior. XRD analysis verified the monoclinic CuO, with microwave-assisted synthesis reducing the crystallite size from 18.0 nm to 13.21 nm and improving crystallinity from 79.51% to 88.43%. SEM analysis further revealed a reduction in average particle size from approximately 27 nm to 18.43 nm after microwave treatment. FTIR and EDS analyses confirmed Cu–O formation along with plant-derived surface functionalities. The microwave-assisted CuO nanoparticles exhibited improved photocatalytic activity toward methylene blue degradation, achieving 79.2% removal within 120 min compared with 60.3% for conventionally synthesized CuO, along with an increased apparent rate constant from 0.0069 to 0.01238 min⁻¹ . Antibacterial assessment against Staphylococcus aureus and Escherichia coli demonstrated concentration-dependent activity, with MIC analysis confirming effective inhibition at low nanoparticle concentrations. Brine shrimp lethality analysis showed concentration- and time-dependent toxicity; however, the estimated LC₅₀ values are considered preliminary due to the limited concentration range investigated. Statistical analysis using one-way ANOVA followed by Duncan’s multiple range test confirmed significant differences in cytotoxic responses (p < 0.05). Overall, microwave-assisted green synthesis enhanced the structural quality and multifunctional performance of CuO nanoparticles, while further comprehensive toxicity studies are required before practical environmental or biomedical applications.

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Journal
Next Nanotechnology
Published
2026-09-11
DOI
https://doi.org/10.1016/j.nxnano.2026.100748
Primary Topic
Copper-based nanomaterials and applications
Type
article
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article

Microwave-assisted versus conventional green synthesis of CuO nanoparticles: A DFT-guided structure–property–performance relationship

Md. Fardous Hasan Bappy, Md. Rasel Islam, Md. Abtahi Islam Fahim, Md. Mehedi Hasan et al.
Next Nanotechnology
Copper-based nanomaterials and applications
article

Microwave-assisted versus conventional green synthesis of CuO nanoparticles: A DFT-guided structure–property–performance relationship

Md. Fardous Hasan Bappy, Md. Rasel Islam, Md. Abtahi Islam Fahim, Md. Mehedi Hasan, Md. Tanvir Islam Emon
article en

Abstract

CuO nanoparticles were synthesized using Clerodendron viscosum leaf extract through conventional green synthesis and microwave-assisted green synthesis, and their structural, electronic, photocatalytic, antibacterial, and cytotoxic properties were systematically investigated using experimental characterization and DFT + U calculations. First-principles calculations confirmed monoclinic CuO as an indirect band-gap semiconductor with a GGA + U band gap of 0.753 eV, while scissors-corrected optical analysis provided insights into its electronic and optical behavior. XRD analysis verified the monoclinic CuO, with microwave-assisted synthesis reducing the crystallite size from 18.0 nm to 13.21 nm and improving crystallinity from 79.51% to 88.43%. SEM analysis further revealed a reduction in average particle size from approximately 27 nm to 18.43 nm after microwave treatment. FTIR and EDS analyses confirmed Cu–O formation along with plant-derived surface functionalities. The microwave-assisted CuO nanoparticles exhibited improved photocatalytic activity toward methylene blue degradation, achieving 79.2% removal within 120 min compared with 60.3% for conventionally synthesized CuO, along with an increased apparent rate constant from 0.0069 to 0.01238 min⁻¹ . Antibacterial assessment against Staphylococcus aureus and Escherichia coli demonstrated concentration-dependent activity, with MIC analysis confirming effective inhibition at low nanoparticle concentrations. Brine shrimp lethality analysis showed concentration- and time-dependent toxicity; however, the estimated LC₅₀ values are considered preliminary due to the limited concentration range investigated. Statistical analysis using one-way ANOVA followed by Duncan’s multiple range test confirmed significant differences in cytotoxic responses (p < 0.05). Overall, microwave-assisted green synthesis enhanced the structural quality and multifunctional performance of CuO nanoparticles, while further comprehensive toxicity studies are required before practical environmental or biomedical applications.

Next NanotechnologyVol. 10
Bangladesh University of Engineering and Technology (BD), Rajshahi University of Engineering and Technology (BD), University of Rajshahi (BD)
Openalex Percentile: Top 24%
Copper-based nanomaterials and applications
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