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Cadmium oxide (CdO) nanoparticles–based drug delivery in cancer prevention, prognosis, diagnosis, imaging, screening, treatment and management and its role and application in overcoming drug resistance under synchrotron and synchrocyclotron radiations
Author(s) -
Alireza Heidari,
Margaret Hotz,
Nancy MacDonald,
Victoria Peterson,
Angela Caissutti,
Elizabeth Besana,
Jennifer Esposito,
Katrina Schmitt,
Ling-Yu Chan,
Francesca Sherwood,
Maria Henderson,
Jimmy Kimmel
Publication year - 2021
Publication title -
international journal of advanced chemistry
Language(s) - English
Resource type - Journals
ISSN - 2310-2977
DOI - 10.14419/ijac.v9i2.31653
Subject(s) - cadmium oxide , drug delivery , synchrotron , materials science , nanoparticle , medicine , nanotechnology , optics , cadmium , physics , metallurgy
In the current research, Cadmium Oxide (CdO) nanoparticles–based drug delivery in cancer prevention, prognosis, diagnosis, imaging, screening, treatment and management and its role and application in overcoming drug resistance under synchrotron and synchrocyclotron radiations. is investigated. The calculation of thickness and optical constants of Cadmium Oxide (CdO) Cadmium Oxide (CdO) nanoparticles–based drug delivery in cancer prevention, prognosis, diagnosis, imaging, screening, treatment and management and its role and application in overcoming drug resistance under synchrotron and synchrocyclotron radiations. produced using sol–gel method over glassy medium through a single reflection spectrum is presented. To obtain an appropriate fit for reflection spectrum, the classic Drude–Lorentz model for parametric di–electric function is used. The best fitting parameters are determined to simulate the reflection spectrum using Lovenberg–Marquardt optimization method. The simulated reflectivity from the derived optical constants and thickness are in good agreement with experimental results.  Cadmium Oxide (Cdo) Nanoparticles–Based Drug Delivery in Cancer Prevention, Prognosis, Diagnosis, Imaging, Screening, Treatment and Management and Its Role and Application in Overcoming Drug Resistance Under Synchrotron and Synchrocyclotron Radiations.   

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