A pioneering electrochemical sensor for the simultaneous determination of nitrofurantoin and furazolidone residues in food and municipal wastewater samples
Sensing and Bio-Sensing Research,
Journal Year:
2024,
Volume and Issue:
45, P. 100678 - 100678
Published: July 27, 2024
In
this
study,
a
pioneering
electrochemical
sensor
was
developed
for
simultaneously
determining
nitrofurantoin
(NFT)
and
furazolidone
(FZD)
residues
in
food
municipal
wastewater
samples.
The
prepared
by
integrating
gold‑silver-alloy
nanocoral
clusters
(Au-Ag-ANCCs)
with
zinc
oxide
nanoparticles
(ZnO-NPs),
carbon
paste
electrode
(CPE)
polyethylene
(PEO)
nanocomposites.
surface
morphology
elemental
compositions
of
Au-Ag-ANCCs/ZnO-NPs-CPE/PEO
were
characterized
FT-IR,
XRD,
SEM,
EDX,
EIS,
CV.
showed
exceptional
performance
over
wide
linear
range,
from
1.0
pM
to
250
μM
NFT
0.9
nM
360
FZD.
detection
quantification
limits
found
be
0.26
0.88
0.023
0.076
FZD,
respectively.
addition,
the
exhibited
excellent
repeatability,
reproducibility,
selectivity,
long-lasting
stability.
When
applied
AZM
ENF
poultry,
fish,
honey,
dairy
products
wastewater,
it
recoveries
96.3–102.8%
relative
standard
deviations
between
1.87%
1.53%.
general,
represents
significant
advance
fight
against
antibiotic
residue
pollution.
Language: Английский
Multi-core–shell nanoboxes comprising polydopamine-derived C coated NiCo@C and FeCo@C nanohybrid for enhanced electrochemical quantification of nitrofurantoin
Xiaojuan Shui,
No information about this author
Huimin Ma,
No information about this author
Yuanyuan Zhang
No information about this author
et al.
Chemical Engineering Journal,
Journal Year:
2024,
Volume and Issue:
unknown, P. 156714 - 156714
Published: Oct. 1, 2024
Language: Английский
Molecularly Imprinted and MXene-based Electrochemical Sensors for Detecting Pharmaceuticals and Toxic Compounds: A concise review.
Journal of environmental chemical engineering,
Journal Year:
2024,
Volume and Issue:
unknown, P. 114569 - 114569
Published: Oct. 1, 2024
Language: Английский
Au-decorated Ti3C2Tx/porous carbon immunoplatform for ECM1 breast cancer biomarker detection with machine learning computation for predictive accuracy
Sadam Hussain Tumrani,
No information about this author
Razium Ali Soomro,
No information about this author
Hamdy Khamees Thabet
No information about this author
et al.
Talanta,
Journal Year:
2024,
Volume and Issue:
278, P. 126507 - 126507
Published: July 4, 2024
Language: Английский
Wrinkled MXene-modified screen-printed electrodes for highly efficient sarcosine detection
Biochemical Engineering Journal,
Journal Year:
2023,
Volume and Issue:
202, P. 109151 - 109151
Published: Nov. 16, 2023
Language: Английский
Pyrolytic conversion of cattle manure and acid mine drainage sludge into biochar for oxidative and adsorptive removal of the antibiotic nitrofurantoin
Kwangsuk Yoon,
No information about this author
Heuiyun Lee,
No information about this author
Gihoon Kwon
No information about this author
et al.
Environmental Research,
Journal Year:
2024,
Volume and Issue:
265, P. 120488 - 120488
Published: Nov. 29, 2024
Language: Английский
Unlocking the potential of bismuth oxybromide microflowers supported silver nanosphere as a SERS platform for detection of nitrofurantoin
Applied Surface Science,
Journal Year:
2024,
Volume and Issue:
unknown, P. 162145 - 162145
Published: Dec. 1, 2024
Language: Английский
Point‐of‐Care Testing of DNA damage markers‐8‐hydroxy‐2′‐deoxyguanosine based on Cobalt‐Iron‐Platinum‐Ruthenium/N doped Ordered Mesoporous Carbon
Yuxin Zhao,
No information about this author
Fangxun Liu,
No information about this author
Tong Zhang
No information about this author
et al.
Electroanalysis,
Journal Year:
2024,
Volume and Issue:
unknown
Published: June 27, 2024
Abstract
In
this
work,
we
achieved
point
of
care
detection
DNA
damage
marker
8‐hydroxy‐2’‐deoxyguanosine
(8‐OH‐dG)
on
tetrapartite
metal
nanoparticles
loaded
ordered
mesoporous
carbon
composite
nanomaterials
(Co‐Fex‐Pt−Pd@NOMC).
Nitrogen
doping
and
co‐metal
loading
were
using
dopamine
as
nitrogen,
sources
linker.
addition,
the
presence
catechol
groups
in
with
strong
affinity
for
ions,
make
simultaneous
confinement
metals
inside
outside
pores
carbon.
Then,
Fe,
Pt
Pd
introduced
to
interact
Co
form
four‐in‐one
alloy
by
oil
bath
carbonisation.
The
finally
formed
Co−Fe
6
‐Pt−Pd@NOMC
nanocomposites
exhibited
excellent
catalytic
performance
determination
8‐OH‐dG.
A
lower
limit
(LOD)
0.044
μM,
a
wide
linear
range
(0.175
μM–118.375
μM)
stability,
reproducibility
selectivity
obtained.
realised
8‐OH‐dG
real
human
urine
sample.
At
same
time,
after
guanine
also
studied
work.
electrochemical
response
was
combined
verify
mechanism
damage.
New
solutions
idea
provided
preparation
inorganic
Language: Английский
Heterointerface engineering of MXene: Advanced applications in environmental remediation
Chemosphere,
Journal Year:
2024,
Volume and Issue:
364, P. 143054 - 143054
Published: Aug. 8, 2024
Language: Английский
Sonochemically Synthesised Nano‐Stone Structured Vanadium Tungstate for Electrochemical Monitoring of Antibiotic Drug Nitrofurantoin in Real Samples
J. Mohanty,
No information about this author
P. Manikanta,
No information about this author
Mounesh
No information about this author
et al.
ChemistrySelect,
Journal Year:
2024,
Volume and Issue:
9(39)
Published: Oct. 1, 2024
Abstract
The
development
of
simple,
accurate,
responsive,
and
selective
antimicrobial
drug
analysis
platforms
is
extremely
important
for
biomedical
research.
Developing
a
novel
electrode
material
that
possesses
low
detection
limit,
high
sensitivity,
stability
continues
to
be
difficult
undertaking.
Here,
vanadium
tungstate
nanostones
(VWNs)
were
synthesized
by
utilizing
facile
sonochemical
method
with
the
aid
urea
ethylene
glycol
application
in
electrochemical
sensing
antibiotic
nitrofurantoin
(NFT).
Using
distinct
analytical
methods,
structural
morphological
characteristics
as‐prepared
transducer
described.
Further,
behaviour
modified
analysed
using
cyclic
voltammetry
liner
sweep
voltammetry.
Under
optimal
conditions
VWNs/GCE
exhibited
superior
electrocatalytic
activity
towards
NFT
linear
range
(20–160
μM),
limit
(0.019
μM)
better
sensitivity
(0.69
μM
−1
cm
−2
).
demonstrated
remarkable
repeatability,
reproducibility,
excellent
stability,
indicating
its
potential
as
an
electrocatalyst.
Ultimately,
suggested
was
used
measure
FLT
real
samples
like
tap
water
capsule.
Language: Английский