Journal of Condensed Matter,
Год журнала:
2025,
Номер
3(02), С. 95 - 99
Опубликована: Май 4, 2025
A
highly
cost-effective
synthesis
approach
has
been
adopted
to
prepare
stable
V2O5
nanorods
for
energy
storage
device
applications.
The
as
synthesized
are
thoroughly
characterized
using
advanced
techniques,
including
scanning
electron
microscopy
(SEM),
X-
ray
diffraction
(XRD),
UV
visible
and
photoluminescence
(PL).
mentioned
techniques
were
performed
provide
the
valuable
insight
into
morphological,
structural,
optical
properties
of
as-synthesized
nanorods.
X-ray
exhibits
structural
with
highest
Bragg’s
angle
observed
at
8.66
degree.
Surface
morphology
prepared
calcinated
nanorod’s
samples
was
studied
by
microscope
(SEM).
bandgap
NRs
calculated
tauc-
plot
achieved
2.61
eV.
spectroscopy
demonstrates
luminescence
behaviour
Aforementioned
results
through
characterizations
its
potential
suitability
photodetector