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Microbial Fabrication of Silver Nanoparticles: From Biosynthesis to Applications

Published March 3, 2025 Β· 1 min read Β· 1 views DOI: 10.70130/cast.2025.8104
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chopra, amber, Pandey, Preeti, Gupta, priyanka (2025). Microbial Fabrication of Silver Nanoparticles: From Biosynthesis to Applications. https://doi.org/10.70130/cast.2025.8104
chopra, amber, Pandey, Preeti, Gupta, priyanka. "Microbial Fabrication of Silver Nanoparticles: From Biosynthesis to Applications.". DOI: 10.70130/cast.2025.8104.
chopra, amber, Pandey, Preeti, Gupta, priyanka. "Microbial Fabrication of Silver Nanoparticles: From Biosynthesis to Applications.". https://doi.org/10.70130/cast.2025.8104.
@article{chopra2025microbial,
  title = {Microbial Fabrication of Silver Nanoparticles: From Biosynthesis to Applications},
  author = {chopra, amber and Pandey, Preeti and Gupta, priyanka},
  year = 2025,
  journal = {},
  volume = 08,
  number = 01,
  pages = 38-52,
  doi = 10.70130/cast.2025.8104,
  url = oai:ojs2.pubs.rsyn.org:article/68,
  language = en
}
Download .bib
TY  - JOUR
TI  - Microbial Fabrication of Silver Nanoparticles: From Biosynthesis to Applications
AU  - chopra, amber
AU  - Pandey, Preeti
AU  - Gupta, priyanka
PY  - 2025
DA  - 2025-03-03
VL  - 08
IS  - 01
SP  - 38-52
DO  - 10.70130/cast.2025.8104
UR  - oai:ojs2.pubs.rsyn.org:article/68
AB  - Due to their affordability and environmental friendliness, green technology approaches are increasingly exploited to synthesize AgNPs. The manufacture of AgNP using biological methods, such as using plants, fungi, and bacteria as catalysts, is covered in several research studies. Using bacteria to synthesize AgNPs is the most appealing, straightforward, environmentally friendly, and economical source. As a result, more reports of AgNPs are being produced using various bacterial genera and species (both Gram-positive and negative). The variety of bacteria (both Gram-positive and Gram-negative) that can produce AgNPs and potential uses for AgNPs are discussed in this review article. Therefore, increasing the use of bacteria to produce AgNPs will be beneficial against pathogenic microbes and offer new possibilities and uses.
LA  - en
ER  - 
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πŸ€– AI Key Takeaways & Research Insights

Automated AI Analysis

πŸ’‘ Core Finding

Due to their affordability and environmental friendliness, green technology approaches are increasingly exploited to synthesize AgNPs.

πŸ”¬ Methodology

The manufacture of AgNP using biological methods, such as using plants, fungi, and bacteria as catalysts, is covered in several research studies.

🎯 Domain Impact

Therefore, increasing the use of bacteria to produce AgNPs will be beneficial against pathogenic microbes and offer new possibilities and uses.

Abstract

Due to their affordability and environmental friendliness, green technology approaches are increasingly exploited to synthesize AgNPs. The manufacture of AgNP using biological methods, such as using plants, fungi, and bacteria as catalysts, is covered in several research studies. Using bacteria to synthesize AgNPs is the most appealing, straightforward, environmentally friendly, and economical source. As a result, more reports of AgNPs are being produced using various bacterial genera and species (both Gram-positive and negative). The variety of bacteria (both Gram-positive and Gram-negative) that can produce AgNPs and potential uses for AgNPs are discussed in this review article. Therefore, increasing the use of bacteria to produce AgNPs will be beneficial against pathogenic microbes and offer new possibilities and uses.

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