Micromachines,
Год журнала:
2024,
Номер
16(1), С. 53 - 53
Опубликована: Дек. 31, 2024
Carbon
nanotubes
(CNTs)
have
attracted
significant
attention
in
the
scientific
community
and
industrial
environment
due
to
their
unique
structure
remarkable
properties,
including
mechanical
strength,
thermal
stability,
electrical
conductivity,
chemical
inertness.
Despite
potential,
large-scale
applications
been
limited
by
challenges
such
as
high
production
costs
catalyst
contamination.
In
aerospace
applications,
CNTs
demonstrated
considerable
promise
either
form
of
thin
layers
or
reinforcements
polymer
metal
matrices,
where
they
enhance
mechanical,
thermal,
electromagnetic
performance
lightweight
composites.
this
short
review,
we
provide
an
overview
CNTs’
properties
structures,
explore
CNT
growth
methods,
with
a
focus
on
vapor
deposition
(CVD),
examine
integration
into
materials
both
films
multifunctional
reinforcements.
Polymer-Plastics Technology and Materials,
Год журнала:
2025,
Номер
unknown, С. 1 - 29
Опубликована: Янв. 12, 2025
This
manuscript
presents
a
systematic
overview
of
molecularly
imprinted
polymer-derived
nanocomposites,
discussing
fundamentals,
design
categorization,
and
technological
worth,
according
to
the
reported
literature
so
far.
In
this
concern,
nanocomposites
polymers
have
been
synthesized
with
carbonaceous
nanoparticles
(graphene,
carbon
nanotube,
fullerene)
inorganic
(metal/metal
oxide,
metal
organic
frameworks).
Principal
synthesis
methods
applied
for
consequential
include
efficient
polymerization
tactics,
like
free
radical
(bulk/emulsion),
electropolymerization,
sol-gel,
precipitation,
imprinting
approaches
(surface
or
nanoimprinting).
Ensuing
macromolecular
assemblies
nanocomposite
hybrid
depicted
valuable
characteristics,
counting
low
price,
high
surface
area,
functionalities,
microstructural
variations,
structural
stability,
facile
synthesis,
desirable
porosity,
sensitivity
toward
other
molecules
depending
upon
their
precision
choice
processing
technique.
Subsequently,
worth
mentioning
combinations
nanocarbon/inorganic
showed
scientific
potential
water
remediation
(adsorbent
materials),
gas/electrochemical
sensors,
drug
delivery,
biosensing
fields.
Although
plenty
reports
revealed
design,
processing,
practical
aspects
polymers;
nonetheless,
we
note,
field
needs
much
future
attention
precise
designs,
perfect
polymer-nanoparticle
assemblies,
well-defined
techniques/parameters
commercial-scale
utilizations.
Journal of Materials Chemistry A,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 1, 2025
With
advances
in
smart
wearable
electronics,
there
is
a
substantial
demand
for
flexible
electronic
skins
with
electromagnetic
interference
(EMI)
shielding.