A Study on effect of zinc oxide and silver nanoparticles in Bio Physics
Author(s):
Puneet Singh, Dr. Rajesh Kumar Katare
ISSN:
2349-6002
Cite This Article:
A Study on effect of zinc oxide and silver nanoparticles in Bio Physics International Journal of Innovative Research in Technology(www.ijirt.org) ,ISSN: 2349-6002 ,Volume 6 ,Issue 2 ,Page(s):293-297 ,July 2019 ,Available :IJIRT148496_PAPER.pdf
Keywords:
Size, Developed, Shape, Field etc
Abstract
In this paper we are presented an investigation to observe the effect of zinc oxide and silver nanoparticles in Bio Physics. Nanoparticles, because of their small size, have distinct properties compared to bulk form of the same material, thus offering many new developments in the fields of biosensors, biomedicine, and bio nanotechnology. Nanotechnology is also being utilized in medicine for the diagnosis, therapeutic drug delivery and the development of the treatments for many diseases and disorders. Nanotechnology can be termed as the synthesis, characterization, exploration and application of nano-sized (1-100nm) materials for the development of science. It deals with the materials whose structures exhibit significantly novel and improved physical, chemical, and biological properties, phenomena, and functionality due to their nano-scaled size. Because of their shape and size, nanoparticles have a larger surface area than macro-sized materials. The intrinsic properties of metal nanoparticles are mainly determined by the size, shape, composition, crystallinity and morphology. The field of nanotechnology is one of the most important and active research areas in modern materials science. Nanoparticles exhibit new or improved properties based on the specific characteristics such as size, distribution and morphology. There have been impressive developments in the field of nanotechnology in the recent past years, with numerous methodologies developed to synthesize nanoparticles of particular shape and size depending on the specific requirements. New applications of nanoparticles and nanomaterials are increasing very rapidly.
Article Details
Unique Paper ID: 148496

Publication Volume & Issue: Volume 6, Issue 2

Page(s): 293 - 297
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Last Date 25 September 2019


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