Nanoscale Advances,
Journal Year:
2024,
Volume and Issue:
6(14), P. 3513 - 3532
Published: Jan. 1, 2024
Recent
advancements
in
MXene-based
wound
dressings
are
discussed,
focusing
on
their
contributions
to
tissue
regeneration,
infection
control,
anti-inflammation
and
photothermal
effects,
targeted
therapeutic
delivery.
Nano-Micro Letters,
Journal Year:
2024,
Volume and Issue:
16(1)
Published: March 4, 2024
Soft
actuators
have
garnered
substantial
attention
in
current
years
view
of
their
potential
appliances
diverse
domains
like
robotics,
biomedical
devices,
and
biomimetic
systems.
These
mimic
the
natural
movements
living
organisms,
aiming
to
attain
enhanced
flexibility,
adaptability,
versatility.
On
other
hand,
angle-independent
structural
color
has
been
achieved
through
innovative
design
strategies
engineering
approaches.
By
carefully
controlling
size,
shape,
arrangement
nanostructures,
researchers
able
create
materials
exhibiting
consistent
colors
regardless
viewing
angle.
One
promising
class
that
holds
great
for
bioinspired
soft
is
MXenes
exceptional
mechanical,
electrical,
optical
properties.
The
integration
with
offers
exciting
possibilities.
Overcoming
material
compatibility
issues,
improving
reproducibility,
scalability,
durability,
power
supply
efficiency,
cost-effectiveness
will
play
vital
roles
advancing
these
technologies.
This
perspective
appraises
development
MXene-centered
robotics.
ACS Biomaterials Science & Engineering,
Journal Year:
2024,
Volume and Issue:
10(4), P. 1892 - 1909
Published: March 11, 2024
MXenes
and
their
composites
hold
great
promise
in
the
field
of
soft
bone
tissue
regeneration
engineering
(TRE).
However,
there
are
challenges
that
need
to
be
overcome,
such
as
ensuring
biocompatibility
controlling
morphologies
MXene-based
scaffolds.
The
future
prospects
TRE
include
enhancing
through
surface
modifications,
developing
multifunctional
constructs,
conducting
vivo
studies
for
clinical
translation.
purpose
this
perspective
about
is
critically
evaluate
potential
applications
contributions
field.
This
aims
provide
a
comprehensive
analysis
challenges,
advantages,
limitations,
associated
with
use
TRE.
By
examining
existing
literature
research,
review
seeks
consolidate
current
knowledge
highlight
key
findings
advancements
It
contribute
understanding
MXenes'
role
promoting
TRE,
addressing
faced
terms
biocompatibility,
morphology
control,
interactions.
Fire,
Journal Year:
2025,
Volume and Issue:
8(2), P. 73 - 73
Published: Feb. 11, 2025
Thermoplastic
resins
are
indispensable
materials
in
various
applications,
including
automotive,
electronics,
packaging,
and
construction,
owing
to
their
superior
mechanical
strength,
ease
of
processing,
versatility.
However,
inherent
flammability
poses
a
significant
challenge
fire
safety,
limiting
broader
use
environments
demanding
stringent
flame-retardant
performance.
MXenes,
newly
emerging
class
two-dimensional
(2D)
nanomaterials,
have
recently
attracted
attention
for
application
polymer
composites
because
multilayered
structure
exceptional
This
review
comprehensively
explores
the
state-of-the-art
advancements
thermoplastic
resins,
focusing
on
MXenes
MXene-based
meet
high-performance
requirements,
thermal
stability,
flame
retardancy,
electromagnetic
interference
(EMI)
properties,
multifunctionality.
Furthermore,
modification
approaches
retardants,
preparation
resin
composites,
mechanisms
action
different
matrices
also
discussed
this
review.
Finally,
discusses
challenges
potential
developments
offering
insights
into
practical
applications
growing
demands
materials.