Advances in Molecular Electronics: a brief Review



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Pubtexto Publishers | www.pubtexto.com 1 Global J Mater Sci Eng 
Open Access 
Global Journal of Materials Science and Engineering 
 
Volume 3 Issue 3
ISSN: 2694-3808
 
Research Article 
Structural and Evaluations of Rare Earth Erbium Try Oxide Nanoparticles and Their 
Health Impacts on Workers 
Gopal S
a
 Iruson B
a* 
Balaraman S

Krishnmoorthy S
c
 and Elayaperumal M
d
 
a
Department of Physics, Arignar Anna Govt Arts College, Cheyyar-604407, Tamil Nadu, India 
b
Department of Physics, Thiruvalluvar University, Vellore-632115, Tamil Nadu, India 
c
Department of Physics, VIT University, Vellore-632014, Tamilnadu, India 
d
Department of Physics, Thiruvalluvar University, TVUCAS Campus, Thennangur, 604408, Tamil Nadu, India 
 
Article Info 
Article History: 
Received:
30 November, 2021 
Accepted:
08 December, 2021 
Published:
13 December, 2021 
*
Corresponding 
author:
Iruson 
B, 
Department of Physics, Arignar Anna 
Govt. Arts College, Cheyyar-604407, 
Tamil Nadu, India;
DOI: 
https://doi.org/10.36266/GJMSE/123
 
 
 
 
 
 
 
 
Abstract
In the current research, rare earth metal Erbium Tri-Oxide nanoparticles (ETO-NPS) have been 
successfully synthesized in the form of crystalline powder using microwave irradiation technique and 
characterized, further the effect of antimicrobial and anticancer studies are carried out against 
Pathogenic microorganism and MDA-MB-231 cell line respectively. To reveal the crystalline structure 
and size of ETO-NPs, powdered X-ray diffraction (XRD) analysis has been carried out. To find out the 
bandgap energy and various functional groups, the UV-Vis spectroscopy (UV-Vis) and Fourier 
transform infrared spectroscopy (FTIR) spectra are used respectively. In scanning electron microscopy 
(SEM) and transmission electron microscopy (TEM) instruments, the interaction or scattering of 
electrons with the synthesized ETO-NPs provides the topography (crystalline shape) of the sample 
which is useful to obtain the size and shape of the ETO-NPs. The major elements (Er and O) present in 
the synthesized sample will be confirmed using EDX analysis. Using the disk diffusion technique, the 
effective zone inhibition area is calculated to find out the effective role (toxic activity) of ETO-
NPs against Bacillus SP, E.Coli, Aspergillus, and Mucor. Further, the activity of ETO-NPs against 
breast cancer-producing MDA-MB-231 cell lines is studied. 

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