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Plant-Based Bimetallic Silver-Zinc Oxide Nanoparticles: A Comprehensive Perspective of Synthesis, Biomedical Applications, and Future Trends.

Maria EhsanAbdul WaheedAbd UllahAbeer KazmiAmir AliNaveed Iqbal RajaZia-Ur-Rehman MashwaniTahira SultanaNilofar MustafaMuhammad IkramHuanyong Li
Published in: BioMed research international (2022)
The universal emphasis on the study of green nanotechnology has led to biologically harmless uses of wide-ranged nanomaterials. Nanotechnology deals with the production of nanosized particles with regular morphology and properties. Various researches have been directed on nanomaterial synthesis by physical, chemical, and biological means. Understanding the safety of both environment and in vivo, a biogenic approach particularly plant-derived synthesis is the best strategy. Silver-zinc oxide nanoparticles are most effective. Moreover, these engineered nanomaterials via morphological modifications attain improved performance in antimicrobial, biomedical, environmental, and therapeutic applications. This article evaluates manufacturing strategies for silver-zinc oxide nanoparticles via plant-derived means along with highlighting their broad range of uses in bionanotechnology.
Keyphrases
  • oxide nanoparticles
  • gold nanoparticles
  • silver nanoparticles
  • physical activity
  • mental health
  • climate change
  • current status
  • metal organic framework