Inorganic Chemistry Frontiers,
Год журнала:
2023,
Номер
10(14), С. 4087 - 4101
Опубликована: Янв. 1, 2023
A
superior
electrochemical
performance
is
achieved
by
constructing
VS
4
–V
2
CT
x
Schottky
contact
heterojunctions
with
built-in
electric
fields
that
accelerate
the
kinetics
of
electron
and
Na
+
diffusion.
Energies,
Год журнала:
2023,
Номер
16(8), С. 3520 - 3520
Опубликована: Апрель 18, 2023
MXenes
are
progressively
evolving
two-dimensional
(2D)
materials
with
an
expanding
wide
range
of
applications
in
the
field
energy
storage.
They
rank
among
best
electrode
for
cutting-edge
storage
systems.
Energy
device
performance
is
greatly
enhanced
by
and
their
composite
materials.
As
technology
has
improved
over
last
several
decades,
demand
high-capacity
devices
that
versatile,
sturdy,
have
cheap
production
costs
increased.
MXene,
which
based
on
Nb2CTx,
most
current
material
to
emerge
applications.
Nb2CTx
MXene
now
sought-after
2D
family
due
its
flexibility,
high
conductivity,
superior
electrochemical
nature,
hydrophilicity,
tunable
surface
functional
groups,
great
mechanical
properties,
layered
structure.
Examples
include
gas
biosensors,
water
splitting,
purification,
antimicrobial
coatings,
electromagnetic
interference
shielding,
transparent
electrical
conductors.
Because
distinctive
properties
scientists
working
further
theoretical
experimental
enhancements.
The
objective
this
work
deliver
outline
breakthroughs
construction
robust,
flexible,
highly
effective
powered
supercapacitors.
Deep
research
been
conducted
structure
as
well
different
synthesis
techniques
properties.
emphasis
also
placed
how
various
aspects,
such
architecture
design,
electrolyte
composition,
so
on,
influence
charge
efficiency
MXene-based
This
article
discusses
recent
advancements
composite-based
Materials & Design,
Год журнала:
2023,
Номер
231, С. 112046 - 112046
Опубликована: Июнь 2, 2023
Two-dimensional
niobium
carbide
(Nb2C),
a
member
of
the
emerging
MXene
family,
has
recently
garnered
attention
in
various
fields,
including
materials
science,
physics,
chemistry,
and
nanotechnology.
In
this
review,
we
highlight
material
properties,
synthesis
strategies,
applications
Nb2C
energy
storage
devices,
catalysis,
photovoltaic
devices.
We
first
introduce
methods,
structural
characteristics,
notable
chemical
physical
properties.
Then,
discuss
influence
morphology,
functional
groups,
electrolytes
on
electrochemical
present
compare
advancements
Nb2C-based
batteries
supercapacitors.
Next,
summarize
current
progress
electrocatalytic
photocatalytic
hydrogen
evolution
reactions.
Finally,
implementation
as
charge
transport
layer
organic
perovskite
solar
cells.
These
examples
encompass
diverse
architectures,
interface
configurations,
functionalization
approaches,
showing
promising
future
for
rising
material.
They
also
inspire
researchers
to
come
up
with
innovative
designs
improve
device
performance
extend
possible
MXene.