Methods and Applications in Fluorescence,
Journal Year:
2024,
Volume and Issue:
12(3), P. 032002 - 032002
Published: May 2, 2024
Abstract
Fluorescence
spectroscopy
serves
as
a
vital
technique
for
studying
the
interaction
between
light
and
fluorescent
molecules.
It
encompasses
range
of
methods,
each
presenting
unique
advantages
applications.
This
finds
utility
in
various
chemical
studies.
review
discusses
spectroscopy,
its
branches
such
Time-Resolved
Spectroscopy
(TRFS)
Lifetime
Imaging
Microscopy
(FLIM),
their
integration
with
other
spectroscopic
including
Raman,
Infrared
(IR),
Circular
Dichroism
(CD)
spectroscopies.
By
delving
into
these
we
aim
to
provide
comprehensive
understanding
capabilities
significance
fluorescence
scientific
research,
highlighting
diverse
applications
enhanced
it
brings
when
combined
methods.
looks
at
technique's
features
prospects
use
advancing
across
domains.
Crystal Growth & Design,
Journal Year:
2024,
Volume and Issue:
24(13), P. 5794 - 5805
Published: June 17, 2024
To
further
enhance
the
hydrogen
evolution
activity
of
g-C3N4,
Au
nanoparticle
(NP)-modified
defective-state
g-C3N4
nanosheet
photocatalysts
(Au/HCN)
were
successfully
prepared
through
in
situ
photodeposition
this
study.
The
Au/HCN
exhibited
an
excellent
photocatalytic
activity.
Under
full
spectrum,
production
rate
(7289
μmol·g–1·h–1)
was
1.6
times
higher
than
that
NPs-modified
pure
nanosheets
(Au/CN)
(4437
and
4.3
bulk
(Au/BCN)
(1664
μmol·g–1·h–1).
photoluminescence
steady-state
photovoltage
spectra
indicate
has
highest
ability
for
photogenerated
charge
separation
electron
transfer
efficiency.
ultraviolet–visible
spectrophotometer
(DRS)
revealed
additional
light
absorption
peak
at
520
nm
Au/HCN.
above
results
defects
can
effectively
inhibit
recombination
charges
from
HCN.
In
addition,
synergistic
interaction
between
NPs
HCN,
as
well
surface
plasmon
resonance
effect
NPs,
promoted
evolution.
Methods and Applications in Fluorescence,
Journal Year:
2024,
Volume and Issue:
12(3), P. 032002 - 032002
Published: May 2, 2024
Abstract
Fluorescence
spectroscopy
serves
as
a
vital
technique
for
studying
the
interaction
between
light
and
fluorescent
molecules.
It
encompasses
range
of
methods,
each
presenting
unique
advantages
applications.
This
finds
utility
in
various
chemical
studies.
review
discusses
spectroscopy,
its
branches
such
Time-Resolved
Spectroscopy
(TRFS)
Lifetime
Imaging
Microscopy
(FLIM),
their
integration
with
other
spectroscopic
including
Raman,
Infrared
(IR),
Circular
Dichroism
(CD)
spectroscopies.
By
delving
into
these
we
aim
to
provide
comprehensive
understanding
capabilities
significance
fluorescence
scientific
research,
highlighting
diverse
applications
enhanced
it
brings
when
combined
methods.
looks
at
technique's
features
prospects
use
advancing
across
domains.