Specific and Selective Targeting Human Cancer Cells, Tissues and Tumors with Seaborgium Nanoparticles as Carriers and Nano–Enhanced Drug Delivery and Therapeutic in Cancer Treatment and Beyond under Synchrotron Radiation
Authors/Creators
- 1. Faculty of Chemistry, California South University, 14731, Comet St. Irvine, CA 92604, USA.
Description
In the current paper, thermoplasmonic characteristics of spherical, core–shell and rod Seaborgium
nanoparticles are investigated. In the current study, thermoplasmonic characteristics of Seaborgium
nanoparticles with spherical, core–shell and rod shapes are investigated. Seaborgium nanoparticles absorb
energy of descendent light and generate some heat in the particle. The generated heat transferred to the
surrounding environment and leads to increase in temperature of adjacent points to nanoparticles. Heat
variations can be obtained by heat transfer equation. The calculations showed that in Seaborgium
nanoparticles, light absorption in Plasmon frequency causes to increase in temperature of the surrounding
environment of nanoparticles. Calculations of nanorods showed that due to ability for shifting surface
Plasmon frequency toward longer wavelength as well as more increase in temperature, this nanostructure is
more appropriate for medical applications such as optothermal human cancer cells, tissues and tumors
treatments.
Files
Parana J Sci Educ v.6 n.4 (8-50) June 5, 2020 A. Heidari.pdf
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