Influence of solvents on the changes in structure, purity, and in vitro characteristics of green-synthesized ZnO nanoparticles from Costus igneus

The present study is intended to produce high-purity zinc oxide nanoparticles from the leaves of Costus igneus and zinc acetate precursor via sustainable methods by the tribulation with three different solvents (hot water, methanol, and acetone) for the extraction of plant compounds. While examining...

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Veröffentlicht in:Applied nanoscience 2018-08, Vol.8 (6), p.1353-1360
Hauptverfasser: Nandhini, G., Suriyaprabha, R., Maria Sheela Pauline, W., Rajendran, V., Aicher, Wilhelm Karl, Awitor, Oscar Komla
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Sprache:eng
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Zusammenfassung:The present study is intended to produce high-purity zinc oxide nanoparticles from the leaves of Costus igneus and zinc acetate precursor via sustainable methods by the tribulation with three different solvents (hot water, methanol, and acetone) for the extraction of plant compounds. While examining the physico-chemical characteristics of ZnO nanoparticles incurred by the catalysis of plant bioactive compounds extracted from different solvents, the hot water extract-based green synthesis process yields higher purity (99.89%) and smaller particle size (94 nm) than other solvents. The optimization of the solvents used for the green synthesis of nanoparticles renders key identification in appropriate extraction of bioactive compounds suitable for the nucleation/production of nanoparticles in addition to annealing temperature. The impregnable usage of ZnO nanoparticles in clinical applications is further confirmed based on the treatment of particles (1–10 mg ml −1 ) against Gram-positive ( S. aureus and S. epidermis ) and Gram-negative bacteria ( E. coli and K. pneumoniae ) with respect to their growth inhibition. An in-force growth inhibition against particular S. aureus and S. epidermis imparted by the low concentration of ZnO nanoparticles signifies the utilization and consumption of green-synthesized high-purity nanoparticles for therapeutic and cosmetic applications.
ISSN:2190-5509
2190-5517
DOI:10.1007/s13204-018-0810-0