4.5 Article

Phytosynthesis of BiVO4 nanorods using Hyphaene thebaica for diverse biomedical applications

期刊

AMB EXPRESS
卷 9, 期 1, 页码 -

出版社

SPRINGER
DOI: 10.1186/s13568-019-0923-1

关键词

Bismuth vanadate; BiVO4; Nanorods; Hyphaene thebaica; Antimicrobial; Antioxidant; Antiviral

资金

  1. UNESCO-UNISA Africa Chair in Nanosciences and Nanotechnology

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Biosynthesis of bismuth vanadate (BiVO4) nanorods was performed using dried fruit extracts of Hyphaene thebaica as a cost effective reducing and stabilizing agent. XRD, DRS, FTIR, zeta potential, Raman, HR-SEM, HR-TEM, EDS and SAED were used to study the main physical properties while the biological properties were established by performing diverse assays. The zeta potential is reported as - 5.21 mV. FTIR indicated Bi-O and V-O vibrations at 640 cm(-1) and 700 cm(-1)/1120 cm(-1). Characteristic Raman modes were observed at 166 cm(-1), 325 cm(-1) and 787 cm(-1). High resolution scanning and transmission electron micrographs revealed a rod like morphology of the BiVO4. Bacillus subtilis, Klebsiella pneumonia, Fusarium solani indicated highest susceptibility to the different doses of BiVO4 nanorods. Significant protein kinase inhibition is reported for BiVO4 nanorods which suggests their potential anticancer properties. The nanorods revealed good DPPH free radical scavenging potential (48%) at 400 mu g/mL while total antioxidant capacity of 59.8 mu g AAE/mg was revealed at 400 mu g/mL. No antiviral activity is reported on sabin like polio virus. Overall excellent biological properties are reported. We have shown that green synthesis can replace well established processes for synthesizing BiVO4 nanorods.

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