Journal of Materials Chemistry A,
Journal Year:
2024,
Volume and Issue:
12(13), P. 7396 - 7417
Published: Jan. 1, 2024
Interfacial
interactions
are
key
factors
to
induce
super-wettability
between
liquid
metals
and
substrates,
which
mainly
involve
physical
chemical
interactions.
Coordination Chemistry Reviews,
Journal Year:
2024,
Volume and Issue:
518, P. 216080 - 216080
Published: July 14, 2024
Supercapacitors
have
garnered
significant
attention
in
recent
years
owing
to
their
exceptional
attributes,
such
as
high
power
density,
prolonged
cycle
stability,
and
the
capacity
fulfil
gap
between
traditional
capacitor
lithium-ion
battery.
Nanostructures
with
different
dimensions
(zero-dimensional,
0D;
one-dimensional,
1D;
two-dimensional,
2D;
three-dimensional,
3D)
were
employed
electrodes.
Such
material's
architecture
at
nanoscale
has
resulted
outstanding
electrochemical
characteristics,
contributing
development
of
high-performance
Supercapacitors.
Recent
advances
design
nanostructured
electrode
materials
for
highlighted
new
insight
into
structure
property
relationship
is
provided
this
authoritative
review.
Unique
classification
based
on
dimensionality,
namely,
0D,
1D,
2D
3D
was
emphasis
performance,
specific
capacitance,
energy
density
cyclability.
The
impact
nanostructures
key
Supercapacitor
properties
that
include
charge
transfer
kinetics,
diffusion,
rate
capability,
well
life
also
highlighted.
These
insights
serve
a
guidance
commercially
viable
applications
day
life,
instance,
drones
used
war-zones.
Materials,
Journal Year:
2024,
Volume and Issue:
17(3), P. 702 - 702
Published: Feb. 1, 2024
To
date,
batteries
are
the
most
widely
used
energy
storage
devices,
fulfilling
requirements
of
different
industrial
and
consumer
applications.
However,
efficient
use
renewable
sources
emergence
wearable
electronics
has
created
need
for
new
such
as
high-speed
delivery,
faster
charge–discharge
speeds,
longer
lifetimes,
reusability.
This
leads
to
supercapacitors,
which
can
be
a
good
complement
batteries.
one
their
drawbacks
is
lower
capability,
triggered
worldwide
research
efforts
increase
density.
With
introduction
novel
nanostructured
materials,
hierarchical
pore
structures,
hybrid
devices
combining
these
unconventional
electrolytes,
significant
developments
have
been
reported
in
literature.
paper
reviews
short
history
evolution
supercapacitors
fundamental
aspects
positioning
them
among
other
energy-storage
systems.
The
main
electrochemical
measurement
methods
characterize
features
discussed
with
focus
on
specific
characteristics
limitations.
High
importance
given
integral
components
supercapacitor
cell,
particularly
electrode
materials
types
electrolytes
that
determine
performance
device
(e.g.,
power
output,
cycling
stability).
Current
directions
development
including
carbonaceous
forms,
transition
metal-based
compounds,
conducting
polymers,
discussed.
synergy
between
material
current
collector
key
factor,
well
fine-tuning
electrolyte.