Biosensors,
Journal Year:
2024,
Volume and Issue:
unknown, P. 239 - 279
Published: Nov. 26, 2024
This
chapter
has
two
sections:
one
covers
the
synthetic
BREs
or
MIPs
used
in
different
sensing
platforms
and
other
is
based
on
role
of
nanomaterials
biosensing
applications.
Fabrication
MIP
recently
reported
biosensors
areas
are
discussed
detail.
Section
8.2
discusses
classification
dependent
dimension,
morphology,
chemical
composition.
Furthermore,
advancement
nanomaterials-based
detail,
along
with
analysis
biosensor
designs
advantages
disadvantages
nanostructures.
8.2.4
difficulties
developments
field
wearable
their
applications
sensing.
Results in Engineering,
Journal Year:
2024,
Volume and Issue:
23, P. 102447 - 102447
Published: June 19, 2024
Pharmaceutical
compounds,
such
as
carbamazepine,
have
become
a
concern
in
aquatic
environments
due
to
their
wide
usage,
resistance
degradation,
and
inefficiency
of
wastewater
treatment
processes.
Therefore,
it
is
important
find
methods
remove
these
compounds
from
aqueous
solutions.
This
study
focuses
on
using
Fe@Fe2O3
nanowires
combined
with
electro
Fenton
process
an
electrochemical
reactor
decompose
carbamazepine
(CBZ).
Various
parameters
were
considered
81
experiments,
pH,
current
density,
concentrations
FeSO4·7H2O,
Fe@Fe2O3,
reaction
time.
The
removal
efficiency
ranged
30.4
%
88.6
%.
utilized
hybrid
adaptive
neuro
fuzzy
inference
system
(ANFIS)
the
ant
colony
optimization
algorithm
(ACO).
ACO
integrated
ANFIS
models
determine
optimum
values
for
studied
parameters.
implementation
through
enhances
models'
ability.
A
total
65
data
points
used
training
model,
16
test
it.
model's
performance
was
assessed
coefficient
determination
(R2
=
0.9988),
root-mean-squared
error
(RMSE
4.54E-03),
average
absolute
relative
deviation
(AARD%
0.7153).
optimal
input
CBZ
determined
follows:
CBZ,
FeSO4·7H2O
nanowire
dose
9.0
mg/L,
4.5
1050.0
mg/L;
contact
time
45.0
min;
pH
4.0;
0.18
A,
resulting
91.2
Additionally,
extended
Fourier
amplitude
sensitivity
(EFAST)
analysis
applied
assess
influence
individual
or
interactions
output.
Nanomaterials,
Journal Year:
2024,
Volume and Issue:
14(11), P. 926 - 926
Published: May 24, 2024
Magnetic
separation
of
photocatalysts
holds
great
promise
for
water
treatment.
A
magnetic
method
has
a
positive
effect
on
the
recovery
catalysts
after
degradation.
In
this
paper,
an
efficient
and
reusable
catalytic
system
is
developed
based
coating
Fe3O4
by
depositing
Fe2+
surface
ZnO.
The
Fe3O4/ZnO
nanocomposite
exhibits
enhanced
performance
organic
pollutant
demonstrates
high
photocatalytic
activity
100%
degradation
efficiency
in
Rhodamine
B
(RhB)
under
UV
light
irradiation
50
min.
excellent
primarily
due
to
photogenerated
electron-hole
pairs
being
facilitated
strong
interaction
between
induction
endows
composite
with
superior
capability
from
water.
Experiments
different
radical
scavengers
revealed
that
hydroxyl
(·OH)
key
reactive
effective
RhB.
This
work
innovatively
affords
common
interfacial
dopant
deposition
strategy
application
dye
pollutants
catalyst
wastewater
efficiently.