Deleted Journal,
Journal Year:
2024,
Volume and Issue:
2(2), P. 1879 - 1879
Published: Nov. 20, 2024
Owing
to
current
growing
demands
of
environmental
friendly
energy
devices,
innumerable
green
materials/nanomaterials
have
been
applied
design
the
desired
high
tech
devices.
Amongst
supercapacitors
ranked
distinctively
for
efficient
storage
competence.
Principally,
nanocomposites
derived
from
or
ecological
polymers
and
nanoparticles
scrutinized
supercapacitor
components.
Concerning
this,
review
has
planned
sketch
application
nanocomposites,
predominantly
supercapacitors.
In
this
concern,
mostly
synthetic
(such
as
polyaniline,
polypyrrole,
etc.)
their
blends
with
natural
(like
chitosan)
having
fine
biodegradability,
non-toxicity,
low
cost,
superior
device
end
performance
found
noteworthy
materials.
Additionally,
nanofillers
like
carbon
(carbon
nanotube,
graphene,
metal
processed
via
techniques,
in
situ,
solution,
sonication,
mixing,
hydrothermal,
exfoliation,
reduction,
etc.,
form
anticipated
consequence,
designed
expectedly
had
advantages
price/weight,
mechanical/heat
resilience,
electron
transference,
capacitance,
power/charge
density,
charge-discharge,
sustainability
well
environmentally
friendliness
related
methodological
systems.
Incidentally,
challenges
towards
devices
conversed.
New Journal of Chemistry,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
Unlocking
sustainability
with
photoactive
graphene-based
advanced
materials
for
clean
energy
and
environment
our
present
posterity.
Green
solutions
aiming
at
scalability,
stability,
cost
effectiveness
are
provided
herein.
International Journal of Molecular Sciences,
Journal Year:
2023,
Volume and Issue:
24(14), P. 11593 - 11593
Published: July 18, 2023
This
review
mainly
addresses
applications
of
polymer/graphene
nanocomposites
in
certain
significant
energy
storage
and
conversion
devices
such
as
supercapacitors,
Li-ion
batteries,
fuel
cells.
Graphene
has
achieved
an
indispensable
position
among
carbon
nanomaterials
owing
to
its
inimitable
structure
features.
have
been
recognized
for
providing
a
high
surface
area,
electron
conductivity,
capacitance,
density,
charge–discharge,
cyclic
stability,
power
efficiency,
other
advanced
features
efficient
devices.
Furthermore,
graphene-containing
superior
microstructure,
mechanical
robustness,
heat
constancy
characteristics.
Thus,
this
state-of-the-art
article
offers
comprehensive
coverage
on
designing,
processing,
applying
graphene-based
nanoarchitectures
high-performance
Despite
the
essential
graphene-derived
nanocomposites,
several
challenges
need
be
overcome
attain
device
performance.
Materials Research Innovations,
Journal Year:
2024,
Volume and Issue:
28(6), P. 478 - 492
Published: March 6, 2024
Graphene
is
a
unique
nanocarbon
nanostructure
which
commonly
used
to
form
the
nanocomposites.
Green
strategies
(chemical
vapour
deposition
with
green
catalysts,
mechanical
exfoliation,
sonication)
and
sustainable
carbon
sources
(plant
extracts
recycled
polymers)
have
been
applied
synthesise
graphene
derivatives.
For
formation
of
nanocomposites,
fabrication
methods
(sonication,
solution
route,
electrostatic,
in
situ
polymerisation,
printing,
hydrothermal,
etc.)
involving
matrices,
nanofillers,
solvents,
reagents,
also
investigated.
Thus,
this
state-of-the-art
overview
highlights
essential
for
nanomaterials.
The
resulting
nanocomposites
numerous
superior
structural
physical
properties
such
as
morphology,
electrical
conductivity,
thermal
stability,
stability.
Subsequently,
synthesised
explored
important
high
performance
technical
applications
including
energy
storage,
packaging,
antibacterial,
bioimaging,
drug
delivery
applications.
Future
research
on
development
advanced
synthesis
may
overcome
design
challenges
Materials,
Journal Year:
2024,
Volume and Issue:
17(23), P. 5825 - 5825
Published: Nov. 27, 2024
The
importance
of
gas
sensors
is
apparent
as
the
detection
gases
and
pollutants
crucial
for
environmental
monitoring
human
safety.
Gas
sensing
devices
also
hold
potential
medical
applications
health
disease
diagnostic
tools.
fabricated
from
graphene-based
fibers
present
a
promising
advancement
in
field
technology
due
to
their
enhanced
sensitivity
selectivity.
diverse
chemical
mechanical
properties
fibers—such
high
surface
area,
flexibility,
structural
stability—establish
them
ideal
gas-sensing
materials.
Most
significantly,
graphene
can
be
readily
tuned
detect
wide
range
gases,
making
highly
versatile
technologies.
This
review
focuses
on
composite
sensors,
with
an
emphasis
preparation
processes
used
achieve
these
mechanisms
involved
sensors.
Graphene
fiber
are
presented
based
composition
target
detailed
discussions
performance.
reveals
that
prepared
through
various
methods
effectively
integrated
into
applications.
By
presenting
overview
developments
this
over
past
decade,
highlights
prospective
integration
future