Materials Advances,
Год журнала:
2024,
Номер
5(12), С. 5041 - 5051
Опубликована: Янв. 1, 2024
Exploring
the
possibility
of
using
various
silsesquioxane
precursors
such
as
(3-aminopropyl)
triethoxysilane
(APTES),
methyltrimethoxysilane
(MTMS),
and
tetraethyl
orthosilicate
(TEOS)
to
produce
silica-bacterial
cellulose
nanofibre
(bCNF)
aerogel.
Polymer Composites,
Год журнала:
2024,
Номер
unknown
Опубликована: Июнь 15, 2024
Abstract
Wearable
technology
refers
to
the
devices
that
are
integrated
with
textiles,
or
implanted
in
body
plants
for
smart
monitoring.
Hence,
this
wearable
has
attracted
tremendous
attention
from
researchers
globally
due
its
functions
be
useful
mankind.
The
key
target
of
review
is
examine
potential
rubber
composite
materials
such
devices.
composites
reviewed
explore
silicone
as
a
matrix
(SR).
Another
objective
includes
use
multi‐walled
carbon
nanotubes
(MWCNTs)
pristine
and
functionalization
forms
explored
reinforcing
fillers.
Moreover,
prospects
CNT
including
their
structure,
properties,
types
both
functionalized
state
reviewed.
Following
this,
mechanical,
electrical,
properties
reported
results
show
strongly
improved
by
adding
functional
groups
composite.
These
improvements
assisted
like
carboxyl
(OH),
carbonyl
(CO),
epoxy,
alkoxy
(CO)
on
surface
filler
useful.
They
assist
improving
filler‐rubber
compatibility
thereby
dispersion
thus
finally
mechanical
electrical
properties.
specific
real‐time
technologies.
This
monitoring
nursing
plant
pulse
growth
monitoring,
health
humidity
sensors.
further
proposes
CNTs
can
obtaining
robust
strain‐sensing
it
assists
sharp
response
time,
strain
sensitivity,
good
stretchability.
Finally,
challenges
discussing
these
Highlights
Configurations
other
parameters
reinforced
were
aspects
comparatively
Applications
sensors,
sensors
reported.
Polymer Composites,
Год журнала:
2024,
Номер
unknown
Опубликована: Дек. 9, 2024
Abstract
The
demand
for
multifunctional,
high‐performance
materials
has
driven
advancements
in
surface‐functionalized
fillers
polymer
composite
coatings.
Despite
progress,
integrating
multiple
protective
properties
within
a
single
hybrid
formulation
remains
challenge.
This
review
explores
recent
developments
surface
and
interfacial
engineering
of
biosourced
fillers,
including
nanocellulose,
2D
like
graphene
oxide,
MXenes,
layered
double
hydroxides,
all
which
have
the
potential
to
enhance
chemical
resistance,
mechanical
strength,
thermal
stability
Key
strategies
include
physical/chemical
treatments,
nanostructuring,
multiscale
optimize
cohesion,
adhesion,
multivalent
interactions
among
matrices,
substrates.
role
computational
modeling
performance
prediction
optimization
is
also
discussed.
concludes
with
current
challenges
future
directions,
highlighting
importance
functionalization
developing
next‐generation,
Highlights
Functionalized
boost
coatings'
performance.
nanomaterials
resistance
corrosion,
wear,
fire.
Bio‐based
offer
sustainable
solutions
lightweight,
robust
Advanced
improves
adhesion
coating
durability.
Modeling
accelerates
design
by
predicting
interactions.
Aerogels
are
widely
applied
for
construction,
aerospace,
military,
and
energy
owing
to
their
lightweight,
high
specific
surface
area,
porosity.
The
porosity
of
aerogels
often
leads
a
lack
mechanical
strength,
which
limits
applications.
Here,
this
study
reports
mechanically
robust
MXene/cellulose
nanocrystal
composite
aerogel
enabled
by
inducing
dense
bridging
through
salting-out.
First,
MXene
sheets
bridged
with
cellulose
molecular
chains
via
hydrogen
bonds,
further
is
constructed
promoting
bond
formation
By
enhancing
bonding,
the
interlayer
spacing
reduced
orientation
improved,
effectively
increasing
dissipation
capacity
porous
structure.
exhibits
Young's
modulus
72.4
MPa,
342.0
kN
m/kg.
An
used
as
triboelectric
material
construct
highly
nanogenerator.
This
provides
an
effective
strategy
preparation
aerogels.