A Novel Dual-Mode Biosensing Platform Based on Au@luminol and CdSe QDs for Detection of Trace Heavy Metal Ions in PM2.5
Qianqian Cai,
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Y. An,
No information about this author
Feng Guo
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et al.
Biosensors and Bioelectronics,
Journal Year:
2025,
Volume and Issue:
278, P. 117366 - 117366
Published: March 10, 2025
Language: Английский
Overcoming Kinetic Barriers of Remote Electrochemiluminescence on Boron-Doped Diamond via Catalytic Coreactant Oxidation
Chemical Communications,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
Using
an
Ir(
iii
)-based
redox
mediator
([Ir(sppy)
3
]
3-
)
overcomes
the
traditional
kinetic
barrier
of
tri-
n
-propylamine
oxidation
on
BDD,
enhancing
ECL
from
Ru(
ii
)-labeled
beads
by
up
to
46-fold.
Language: Английский
Real-Time Visualization of Endogenous H2O2 Production in Mammalian Spheroids by Electrochemiluminescence
Chemical & Biomedical Imaging,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 10, 2025
Language: Английский
Single-Atom Iron Boosts Counter Electrode Electrochemiluminescence for Biosensing
Analytical Chemistry,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 6, 2025
Traditional
electrochemiluminescence
(ECL)
detection
makes
it
difficult
to
realize
the
spatial
separation
of
sensing
and
reporting
sides,
which
inevitably
causes
mutual
interference
between
target
luminescent
substance.
By
studying
relationship
luminol
luminescence
position
electrode
potential
in
a
three-electrode
system,
this
work
realized
sides
for
first
time.
Experimental
investigations
showed
that
only
emitted
ECL
signals
at
electrodes
with
positive
polarity,
regardless
whether
or
negative
voltage
was
applied.
Inspired
by
this,
we
introduced
carbon
vacancy-modified
iron
single-atom
catalyst
(VC-Fe-N-C
SAC)
excellent
oxygen
reduction
reaction
(ORR)
activity
into
working
electrode,
can
catalyze
dissolved
O2
produce
abundant
reactive
species
(ROS).
ROS
diffused
surface
counter
oxidize
high-intensity
signal
an
ultralow
trigger
potential.
As
proof-of-concept
application,
sensitive
biosensor
constructed
microcystin-LR
(MC-LR)
detection.
This
solved
substance
traditional
system
improved
accuracy
sensitivity.
Furthermore,
introduction
catalysts
(SAC)
avoided
use
coreactant
H2O2
tedious
electrochemical
oxidation
process
luminol,
broadened
application
biosensors.
Language: Английский
Nanoconfinement Effect and Nanozyme Catalysis Enhance ILu/HOF-14 Electrochemiluminescence for Biosensing
Qianqian Cai,
No information about this author
Yuehui Wang,
No information about this author
Guifen Jie
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et al.
Analytical Chemistry,
Journal Year:
2025,
Volume and Issue:
unknown
Published: April 12, 2025
A
low
collision
frequency
and
an
insufficient
number
of
free
radicals
are
the
main
problems
leading
to
electroluminescence
(ECL)
efficiency
luminol
its
derivatives.
In
order
solve
above
issues,
this
work
used
nanoconfinement
combined
with
nanozyme
catalysis
significantly
enhance
ECL
efficiency.
We
assembled
isoluminol
(ILu)
into
hydrogen-bonded
organic
framework
HOF-14
prepared
a
novel
emitter
ILu/HOF-14
for
first
time.
Surprisingly,
compared
ILu/H2O2
system,
signal
ILu/HOF-14/H2O2
was
increased
by
33
times.
This
because
porous
structure
effectively
limited
movement
their
frequency.
Therefore,
reaction
rate
between
improved
achieve
amplification.
To
further
increase
radicals,
we
introduced
hybrid
Zn
SAC@CuO2
NPs
superior
peroxidase
(POD)-like
activity.
It
could
catalyze
coreactant
H2O2
produce
large
amount
ROS
(OH•
O2•-),
accelerating
ILu
improving
signal.
Based
on
research,
dual-mode
biosensing
imaging
platform
constructed
detect
microcystin-LR
(MC-LR).
nonspecific
trans-cleavage
activity
CRISPR-Cas12a
system
dynamic
continuity
amplification
capability
platform,
detection
sensitivity
broadening
avenues
molecular
diagnostic
strategies.
Language: Английский
Sustained Regeneration of Hydrogen Peroxide at the Water–Gas Interface of Electrogenerated Microbubbles on an Electrode Surface
Journal of the American Chemical Society,
Journal Year:
2024,
Volume and Issue:
146(46), P. 31945 - 31949
Published: Nov. 5, 2024
Microbubbles,
inside-out
microdroplets,
act
as
extraordinary
microreactors
to
facilitate
thermodynamically
unfavorable
reactions
in
bulk
solutions
of
water.
We
explored
the
formation
hydrogen
peroxide
(H
Language: Английский