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:
2023,
Volume and Issue:
15(1)
Published: April 13, 2023
Abstract
Today,
self-healing
graphene-
and
MXene-based
composites
have
attracted
researchers
due
to
the
increase
in
durability
as
well
cost
reduction
long-time
applications.
Different
studies
focused
on
designing
novel
with
enhanced
sensitivity,
stretchability,
flexibility
improved
electrical
conductivity,
healing
efficacy,
mechanical
properties,
energy
conversion
efficacy.
These
properties
can
be
employed
field
of
wearable
sensors,
supercapacitors,
anticorrosive
coatings,
electromagnetic
interference
shielding,
electronic-skin,
soft
robotics,
etc.
However,
it
appears
that
more
explorations
are
still
needed
achieve
excellent
arbitrary
shape
adaptability,
suitable
adhesiveness,
ideal
durability,
high
immediate
responsibility,
outstanding
features.
Besides,
optimizing
reaction/synthesis
conditions
finding
strategies
for
functionalization/modification
crucial
aspects
should
comprehensively
investigated.
MXenes
graphene
exhibited
superior
electrochemical
abundant
surface
terminations
great
area,
which
important
evolve
biomedical
sensing
stretchability
criteria
need
their
future
Herein,
most
recent
advancements
pertaining
applications
deliberated,
focusing
challenges
perspectives.
ACS Omega,
Journal Year:
2022,
Volume and Issue:
7(50), P. 45962 - 45980
Published: Dec. 10, 2022
Recently,
the
upsurge
in
hospital-acquired
diseases
has
put
global
health
at
risk.
Biomedical
implants
being
primary
source
of
contamination,
development
biomedical
with
antimicrobial
coatings
attracted
attention
a
large
group
researchers
from
around
globe.
Bacteria
develops
biofilms
on
surface
implants,
making
it
challenging
to
eradicate
them
standard
approach
administering
antibiotics.
A
further
issue
current
concern
is
fast
resurgence
resistance
conventional
As
nanotechnology
continues
advance,
various
types
nanomaterials
have
been
created,
including
2D
nanoparticles
and
metal
oxide
properties.
Researchers
all
over
world
are
using
these
materials
as
coating
agent
for
create
an
environment.
This
comprehensive
contemporary
review
summarizes
metals,
nanoparticles,
nanomaterials,
their
composites
that
used
or
may
be
future
well
succinct
mode
action
combat
biofilm-associated
infection
diseases.
Journal of Materials Chemistry A,
Journal Year:
2024,
Volume and Issue:
12(13), P. 7351 - 7395
Published: Jan. 1, 2024
This
review
provides
insights
into
MXene
synthesis
methods,
mechanisms,
terminations,
modifications
strategies
and
important
applications.
Additionally,
the
advantages,
drawbacks,
suggestions,
precautions
have
been
discussed.
ACS Sensors,
Journal Year:
2024,
Volume and Issue:
9(4), P. 1706 - 1734
Published: April 2, 2024
The
development
of
advanced
technologies
for
the
fabrication
functional
nanomaterials,
nanostructures,
and
devices
has
facilitated
biosensors
analyses.
Two-dimensional
(2D)
with
unique
hierarchical
structures,
a
high
surface
area,
ability
to
be
functionalized
target
detection
at
surface,
exhibit
potential
biosensing
applications.
electronic
properties,
mechanical
flexibility,
optical,
electrochemical,
physical
properties
2D
nanomaterials
can
easily
modulated,
enabling
construction
platforms
various
analytes
targeted
recognition,
sensitivity,
selectivity.
This
review
provides
an
overview
recent
advances
in
nanostructures
used
biosensor
wearable-sensor
healthcare
health-monitoring
Finally,
advantages
2D-nanomaterial-based
several
challenges
their
optimal
operation
have
been
discussed
facilitate
smart
high-performance
future.
Nanomaterials,
Journal Year:
2022,
Volume and Issue:
12(19), P. 3360 - 3360
Published: Sept. 27, 2022
MXenes
encompass
attractive
properties
such
as
a
large
surface
area,
unique
chemical
structures,
stability,
elastic
mechanical
strength,
excellent
electrical
conductivity,
hydrophilicity,
and
ease
of
functionalization/modifications,
which
make
them
one
the
broadly
explored
two-dimensional
materials
in
world.
MXene-based
micro-
nanocomposites/systems
with
special
optical,
mechanical,
electronic,
targeting/selectivity
features
have
been
for
cancer
nanotheranostics.
These
exhibit
great
diagnostic
therapeutic
potential
offer
opportunities
photoacoustic
imaging
along
photodynamic
photothermal
therapy.
They
can
be
applied
to
targeted
anticancer
drug
delivery
while
being
deployed
imaging/diagnosis
tumors/cancers
malignancies.
systems
functionalized
suitable
biocompatible
or
bioactive
agents
cellular
uptake
transferring
from
vascular
endothelial
cells
specific
localization,
high
auto-fluorescence
benefits
at
different
emission-excitation
wavelengths,
permitting
post-transport
examination
tracking.
The
engineering
improve
their
biocompatibility,
targeting,
bioavailability,
biodegradability
electrochemical
develop
multifunctional
theranostic
applications.
However,
challenges
still
persist
terms
environmentally
benign
fabrication,
up-scalability,
functionality
improvement,
optimization
conditions,
functionalization,
biodegradability,
clinical
translational
studies,
pharmacokinetics.
This
manuscript
delineates
recent
advancements,
opportunities,
important
pertaining
nanotheranostic
derivatives.
Nanomaterials,
Journal Year:
2023,
Volume and Issue:
13(2), P. 345 - 345
Published: Jan. 14, 2023
Today,
MXenes
and
their
composites
have
shown
attractive
capabilities
in
numerous
fields
of
electronics,
co-catalysis/photocatalysis,
sensing/imaging,
batteries/supercapacitors,
electromagnetic
interference
(EMI)
shielding,
tissue
engineering/regenerative
medicine,
drug
delivery,
cancer
theranostics,
soft
robotics.
In
this
aspect,
MXene-carbon
nanotube
(CNT)
been
widely
constructed
with
improved
environmental
stability,
excellent
electrical
conductivity,
robust
mechanical
properties,
providing
great
opportunities
for
designing
modern
intelligent
systems
diagnostic/therapeutic,
electronic,
applications.
unique
architectures,
large
specific
surface
areas,
ease
functionalization,
high
conductivity
employed
hybridization
CNTs
superb
heat
fascinating
features.
However,
most
the
studies
centered
around
EMI
catalytic,
sensing
applications;
thus,
need
research
on
biomedical
diagnostic/therapeutic
applications
these
materials
ought
to
be
given
more
attention.
The
photothermal
conversion
efficiency,
selectivity/sensitivity,
stability/recyclability,
biocompatibility/toxicity,
long-term
biosafety,
stimuli-responsiveness
features,
clinical
translation
are
among
crucial
aspects
that
still
comprehensively
investigated.
Although
limited
explorations
focused
MXene-CNT
composites,
future
should
planned
optimization
reaction/synthesis
conditions,
toxicological
evaluations.
Herein,
recent
advancements
pertaining
sensing,
catalysis,
supercapacitors/batteries,
water
treatment/pollutants
removal
highlighted,
focusing
current
trends,
challenges,
outlooks.