International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


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Research Paper | Nanotechnology | India | Volume 13 Issue 1, January 2024


Characterization and Formulation Loaded Silver Nanowire from Jatropha Gossypiifolia Stem Extract

Snehal B. Fand | Shubham B. Sisale | Eknath V. Unde


Abstract: Introduction: Silver nanowires are extensively studied in the current research using because of its high conductivity, transparency and stability. Objective: The objective of the contemporary research is to describe the most recent synthesis strategies in prepare and evaluate Ag nanowire of Jatropha gossypiifolia stem extract for high-aspect-ratio. Method: Preparation of AgNWs from Jatropha gossypiifolia stem extract were successfully synthesized by a green method and AgNWs were evaluated by in-vitro anticancer activity. Result: AgNWs are thoroughly studied in the recent research because of their exceptional phytochemical and biological capabilities. Aqueous silver ions were shown to be decreased in solution when exposed to a Jatropha gossypiifolia extract, which resulted in the creation of silver nanowire within 4 hours at 500C. A UV-visible, FTIR, particle size, zeta potential, and SEM spectrophotometer are used to characterize silver nanowires. Additionally, it was discovered that the diameters of the synthesized AgNWs ranged from 50 nm to 204 nm, with particle sizes of up to 748.3 nm. The colloidal suspension's zeta potential was discovered to be -27.3 mV. The AgNWs generated silver nanowires and demonstrated in-vitro anticancer efficacy against MCF-7 cells. Conclusion: AgNWs are a promising alternative to traditional materials for transparent electrodes. Therefore, silver nanowires have great potential application in optoelectronic devices and their cytotoxicity will be evaluated in our future work for nanomedicine applications.


Keywords: Jatropha gossypiifolia, Successive Extraction, Silver Nanowire, Characterization, Anticancer activity


Edition: Volume 13 Issue 1, January 2024,


Pages: 788 - 791


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