IntechOpen eBooks,
Год журнала:
2024,
Номер
unknown
Опубликована: Дек. 14, 2024
Nowadays,
nanomaterials
are
considered
a
magic
tool
in
many
industrial
applications.
They
offer
smart
solutions
for
problems
related
to
health,
the
environment,
and
energy.
Because
of
their
tiny
size
precise
characters,
represent
unique
vital
component
microelectromechanical
systems
(MEMS)
nanoelectromechanical
(NEMS)-based
technologies.
One
most
important
applications
these
technologies
is
sensors.
Sensors
divided
into
two
main
constituents,
first
device
second
sensing
materials.
This
chapter
explains
sensor
components.
It
highlights
different
classes
The
categories
techniques
summarized.
also
relation
between
materials
proposed
techniques,
with
focus
on
properties
at
nanoscale
selective
response
certain
stimuli.
Finally,
it
concludes
challenges
prospective
industry
market.
Processes,
Год журнала:
2024,
Номер
12(3), С. 624 - 624
Опубликована: Март 21, 2024
Enzymatic
additives,
particularly
alkaline
proteases,
play
a
crucial
role
in
enhancing
detergent
effectiveness
against
protein-based
stains.
Despite
advancements
enzyme
stabilization
techniques,
there
is
need
for
innovative
strategies
to
further
improve
protease
stability
laundry
detergents.
However,
research
exploring
the
utilization
of
substrate
imprinting
technology
achieve
this
objective
remains
limited.
Therefore,
study
aims
enhance
proteases
detergents
by
employing
casein
as
an
and
utilizing
transglutaminase-mediated
(TGase)
crosslinking
modify
102
306.
The
optimal
temperature,
pH,
thermal
modified
306
showed
no
significant
changes.
these
two
exhibited
varying
degrees
improvement
among
14
additives
tested.
Under
40
°C
incubation
24
h,
relative
activity
increased
approximately
1.4–15-fold
AEO-9,
BS-12,
CMI,
APG,
FMEE,
SOE,
while
1.2–3.7-fold
across
different
(FMEE,
FAA,
AEC-9Na).
These
demonstrated
improved
wider
applicability
commercial
formulations
available.
Integrated
into
standard
at
1:7
ratio
before
after
modification,
they
effectively
removed
protein
stains
from
cotton
fabric
h
incubation.
findings
provide
insights
more
effective
stain-removal
techniques.
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.
iScience,
Год журнала:
2025,
Номер
28(4), С. 112186 - 112186
Опубликована: Март 10, 2025
Molecular
imprinting
has
become
an
effective
technology
in
the
realm
of
diagnosing
diseases,
providing
unparalleled
specificity
and
sensitivity.
This
method
is
a
promising
trend
current
medical
research.
review
examines
utilization
molecularly
imprinted
polymers
(MIPs)
theranostic
that
integrates
diagnostic
functionalities
for
personalized
medicine.
The
present
work
briefly
discusses
fundamental
concepts
molecular
how
it
evolved
into
versatile
platform.
Subsequently,
MIPs
advancement
biosensors
focused,
specifically
emphasizing
their
contribution
to
detection
diagnosis
diseases.
therapeutic
potential
MIPs,
focusing
on
targeted
drug
delivery
controlled
release
systems
integration
platforms
explored
through
case
studies,
showcasing
technology's
ability
simultaneously
diagnose
treat
Finally,
we
address
challenges
facing
discuss
future
perspectives,
this
revolutionize
next
generation.