Effect of Copper Tungstate Nanoparticles on the Structural, Optical, and Dielectric Properties of Carboxymethyl Cellulose/Polyvinyl Alcohol Nanocomposite Films
Hanaa Almaghamsi,
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Wafaa Al-Ghamdi,
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N. M. Basfer
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et al.
Physica B Condensed Matter,
Journal Year:
2025,
Volume and Issue:
701, P. 416969 - 416969
Published: Jan. 29, 2025
Language: Английский
Solvent-free synthesis and characterization of nanocurcumin-reinforced zinc oxide bio-nanocomposites for enhanced optoelectronic applications
B. T. P. Madhav,
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V. Anunanda,
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K. Arun
No information about this author
et al.
Applied Physics A,
Journal Year:
2025,
Volume and Issue:
131(5)
Published: April 7, 2025
Language: Английский
Single-Step Fabrication of High-Performance Chlorinated Polyethylene /CuO Nanocomposites for Energy Storage Applications
M. Shini,
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M. T. Ramesan
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Polymer,
Journal Year:
2025,
Volume and Issue:
unknown, P. 128399 - 128399
Published: April 1, 2025
Language: Английский
Synergistic Effects of NiO Nanoparticles in Chlorinated Polyethylene: Eco‐Friendly Mill Mixing for Advanced Thermoplastic Nanocomposites
M. Shini,
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M. T. Ramesan
No information about this author
Journal of Applied Polymer Science,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 17, 2025
ABSTRACT
This
study
presents
an
eco‐friendly
mill
mixing
method
to
develop
polymer
nanocomposites
from
chlorinated
polyethylene
(CPE)
and
nickel
oxide
(NiO)
nanoparticles,
aiming
enhance
performance
across
a
wide
temperature
range
for
advanced
electronics
electric
transportation.
FTIR
spectra
confirm
the
presence
of
distinct
infrared
peaks
NiO
in
CPE
matrix,
while
XRD
analysis
reveals
improved
crystallinity
upon
incorporation.
UV–Vis
spectroscopy
demonstrates
smallest
optical
bandgap
highest
refractive
index
values
with
7
wt%
NiO.
FE‐SEM
verifies
homogeneous
dispersion
HR‐TEM
confirms
nanoscale
uniformity
nanocomposite.
DSC
TGA
analyses
demonstrate
that
incorporating
significantly
enhances
thermal
properties
CPE.
Evaluation
AC
conductivity,
dielectric
constant,
complex
modulus
nanocomposite
has
these
properties,
2.2‐fold
increase
constant
4.6‐fold
improvement
supported
by
its
lowest
activation
energy.
Mechanical
testing
further
70%
tensile
strength,
54%
enhancement
impact
9%
rise
hardness
work
contributes
advancement
flexible
conductive
thermoplastic
nanocomposites,
positioning
them
as
promising
materials
high‐performance
energy
storage
applications.
Language: Английский