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Metals in Medicine, Volume 2: Metallic Nanoparticles for Biomedical Applications.
Sonali Sundram, Rishabha Malviya, and GSN Koteswara Rao
© 2025 Apple Academic Press, Inc. Co-published with CRC Press (Taylor & Francis)
Principal Applications of Gold
Nanoparticles in the Biomedical Field
TANISHKA C. PATIL, MRUNAL R. GENGE, and KIRAN D. PAWAR
School of Nanoscience and Biotechnology, Shivaji University, Kolhapur,
Maharashtra, India
CHAPTER 9
ABSTRACT
including but not limited to agriculture, construction, the textile industry,
especially metal-based nanoparticles are becoming prevalent in biomedical
-
metal nanoparticles (MNPs) have become the most studied and examined
photo ablation therapy, cancer treatment, targeted drug delivery, diag-
and shape can indeed be greatly controlled through physical and chemical
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292
Metals in Medicine, Volume 2
-
9.1 INTRODUCTION
biological science, and chemical science.
1
metal, metal oxide, carbons, polymers, and composites have been devel-
-
culture, construction, textile, automotive, biomedicine, health, and many
others.
2
-
2
Due to their large
3
4
biomedical applications,
5
nanocoatings
6
to other MNPs.
7
7
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Principal Applications of Gold Nanoparticles in the Biomedical Field
293
9.2 GOLD NANOPARTICLE’S HISTORICAL PERSPECTIVE
Gold has the chemical symbol Au and the atomic number 79. It is among the
-
8
Gold is naturally
-
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lent biocompatibility, are durable against oxidation, and are noncytotoxic.
amines, polymers, etc. With all these unique characteristics, AuNPs are the
application, imaging, etc.
9
9.3 PHYSICAL AND CHEMICAL METHODS OF SYNTHESIS
-
10
11
12
13
methods.
14
discharge, ball milling, electro-explosion, and mechanical grinding are the
occurs under conditions at high temperatures and pressure. Sol–gel
process, pyrolysis, electrolysis, chemical vapor deposition, microemulsion,
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