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Review
. 2022 Aug 1:2022:8184217.
doi: 10.1155/2022/8184217. eCollection 2022.

Biologically Derived Gold Nanoparticles and Their Applications

Affiliations
Review

Biologically Derived Gold Nanoparticles and Their Applications

Arpita Roy et al. Bioinorg Chem Appl. .

Abstract

Nanotechnology is a rapidly evolving discipline as it has a wide variety of applications in several fields. They have been synthesized in a variety of ways. Traditional processes such as chemical and physical synthesis have limits, whether in the form of chemical contamination during synthesis operations or in subsequent applications and usage of more energy. Over the last decade, research has focused on establishing easy, nontoxic, clean, cost-effective, and environmentally friendly techniques for nanoparticle production. To achieve this goal, biological synthesis was created to close this gap. Biosynthesis of nanoparticles is a one-step process, and it is ecofriendly in nature. The metabolic activities of biological agents convert dissolved metal ions into nanometals. For biosynthesis of metal nanoparticles, various biological agents like plants, fungus, and bacteria are utilized. In this review paper, the aim is to provide a summary of contemporary research on the biosynthesis of gold nanoparticles and their applications in various domains have been discussed.

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Conflict of interest statement

The authors declare no conflicts of interest.

Figures

Figure 1
Figure 1
Synthetic methods for the synthesis of gold nanoparticles.
Figure 2
Figure 2
Mechanism of GNPs biosynthesis [22].
Figure 3
Figure 3
Green synthesis of GNPs from a plant [68].

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References

    1. Sikiru S., Ayodele O. A., Sanusi Y. K., et al. A comprehensive review on nanotechnology application in wastewater treatment a case study of metal-based using green synthesis. Journal of Environmental Chemical Engineering . 2022;10108065
    1. Roy A., Roy M., Alghamdi S., et al. Role of microbes and nanomaterials in the removal of pesticides from wastewater. International Journal of Photoenergy . 2022;2022:12.2131583
    1. Khan A., Roy A., Bhasin S., et al. Nanomaterials: an alternative source for biodegradation of toxic dyes. Food and Chemical Toxicology . 2022;164112996 - PubMed
    1. Pandit C., Roy A., Ghotekar S., et al. Biological agents for synthesis of nanoparticles and their applications. Journal of King Saud University Science . 2022;34(3)101869
    1. Muddapur U. M., Alshehri S., Ghoneim M. M., et al. Plant-based synthesis of gold nanoparticles and theranostic applications: a review. Molecules . 2022;27(4):p. 1391. - PMC - PubMed

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