The Journal of Physical Chemistry Letters,
Год журнала:
2024,
Номер
15(11), С. 2995 - 3001
Опубликована: Март 8, 2024
Room-temperature
phosphorescence
materials
have
found
important
applications
in
dissolved
oxygen
sensing,
temperature
monitoring,
anticounterfeiting,
etc.,
because
of
their
prolonged
lifetime.
However,
the
known
systems
mainly
utilize
triplet
local
excited
state
emission,
which
is
generally
less
sensitive
to
microenvironment
perturbation.
In
this
work,
we
designed
a
series
4-phenyl-1,8-naphthalimide
(NMI)
derivatives
containing
different
numbers
carbazole
(Cz)
units
(denoted
as
NMI-Cz,
NMI-2Cz,
and
NMI-3Cz).
Steady
time-resolved
spectroscopy
studies
determined
that
compounds
undergo
intramolecular
through-space
charge
transfer
solution,
yielding
hybrid
state.
emission
was
observed
compound-doped
poly(methyl
methacrylate)
thin
films
upon
ammonia
treatment.
Interestingly,
from
exhibited
persistence
times.
We
believe
film-based,
luminescent
sensor
could
be
developed
by
making
device
emissive
fabricated.
Chemical Society Reviews,
Год журнала:
2023,
Номер
52(14), С. 4549 - 4566
Опубликована: Янв. 1, 2023
This
tutorial
review
introduces
recent
advances
in
molecular
afterglow
imaging
using
organic
materials
with
a
focus
on
substrates,
mechanisms,
design
principles
of
probes,
and
their
biomedical
applications.
Advanced Functional Materials,
Год журнала:
2024,
Номер
34(25)
Опубликована: Фев. 6, 2024
Abstract
Afterglow
materials
have
attracted
much
attention
owing
to
their
long
luminescence
lifetimes,
large
Stokes
shifts,
and
emission
without
real‐time
excitation.
Compared
with
traditional
organic
afterglow
materials,
carbon
dots
(CDs),
as
a
new
material,
superior
properties
such
easy
preparation,
low
toxicity,
cost.
The
color
of
CDs
can
be
regulated
by
external
factors
excitation
wavelength,
temperature,
time,
which
is
highly
significant
for
expanding
the
diversified
applications
make
them
available
biotechnology
information
applications.
This
review
summarizes
research
progress
multicolor
in
recent
years,
including
regulation
strategies,
preparation
methods,
First,
are
classified
into
three
strategies:
room
temperature
phosphorescence
(RTP),
thermally
activated
delayed
fluorescence
converted
RTP,
based
on
Förster
resonance
energy
transfer,
strategies
regulating
analyzed.
Second,
methods
achieving
summarized
both
matrix‐free
matrix‐confined
aspects.
Then,
anticounterfeiting
encryption,
sensing
bioimaging
introduced
detail.
Finally,
future
challenges
opportunities
prospected
provide
ideas
controlled
design
wide
application.
Advanced Materials,
Год журнала:
2024,
Номер
36(30)
Опубликована: Май 11, 2024
Abstract
The
spotlight
has
shifted
to
near‐infrared
(NIR)
luminescent
materials
emitting
beyond
1000
nm,
with
growing
interest
due
their
unique
characteristics.
ability
of
NIR‐II
emission
(1000–1700
nm)
penetrate
deeply
and
transmit
independently
positions
these
NIR
for
applications
in
optical‐communication
devices,
bioimaging,
photodetectors.
combination
rare
earth
metals/transition
metals
a
variety
matrix
provides
new
platform
creating
chemical
physical
properties
science
device
applications.
In
this
review,
the
recent
advancements
activated
by
transition
metal
ions
are
summarized
role
spanning
sensing,
optoelectronics
is
illustrated.
It
started
various
synthesis
techniques
explored
how
earths/transition
can
be
skillfully
incorporated
into
matrixes,
thereby
endowing
them
discussion
strategies
enhancing
excitation
absorption
efficiency,
spotlighting
innovations
like
dye
sensitization
surface
plasmon
resonance
effects
then
extended.
Subsequently,
significant
focus
placed
on
functionalization
Finally,
comprehensive
analysis
challenges
proposed
earth/transition
ion‐doped
materials,
summarizing
insights
each
section
provided.
Advanced Materials,
Год журнала:
2024,
Номер
36(30)
Опубликована: Май 13, 2024
Abstract
Confining
luminophores
into
modified
hydrophilic
matrices
or
polymers
is
a
straightforward
and
widely
used
approach
for
afterglow
bioimaging.
However,
the
quantum
yield
lifetime
of
related
material
remain
unsatisfactory,
severely
limiting
using
effect
especially
deep‐tissue
time‐resolved
imaging.
This
fact
largely
stems
from
dilemma
between
biocompatibility
quenching
water
environment.
Herein
an
in
situ
metathesis
promoted
doping
strategy
presented,
namely,
mixing
≈10
−3
weight
ratio
organic‐emitter
multicarboxylates
with
inorganic
salt
reactants,
followed
by
reactions
to
prepare
series
but
water‐insoluble
organic–inorganic
materials.
leads
formation
edible
long‐afterglow
photoluminescent
materials
superior
excellent
bioimaging
effect.
The
phosphorescence
can
reach
dozens
percent
(the
highest
case:
66.24%),
together
lasting
coupes
seconds.
Specifically,
barium
meal
formed
coronene
emitter
BaSO
4
matrix
applied
animal
experiments
gavage,
bright
stomach
imaging
observed
instruments
mobile
phone
after
ceasing
photoexcitation
deep
tissue
penetration.
allows
flexible
dosage
during
bioimaging,
facilitating
development
real‐time
probing
theranostic
technology.
Advanced Materials,
Год журнала:
2024,
Номер
36(37)
Опубликована: Июль 14, 2024
Abstract
Smart
stimuli‐responsive
persistent
luminescence
materials,
combining
the
various
advantages
and
frontier
applications
prospects,
have
gained
booming
progress
in
recent
years.
The
trap‐controlled
property
energy
storage
capability
to
respond
external
multi‐stimulations
through
diverse
pathways
make
them
attractive
emerging
multi‐responsive
smart
platforms.
This
review
aims
at
advances
materials
for
advanced
multi‐stimuli‐responsive
design
principles,
mechanisms,
representative
stimulations,
i.e.,
thermo‐,
photo‐,
mechano‐,
X‐rays
responsiveness,
are
comprehensively
summarized.
Various
hybrid
systems
containing
highlighted.
Specifically,
temperature
dependent
trapping
de‐trapping
performance
is
discussed,
from
extreme‐low
ultra‐high
conditions.
Emerging
future
perspectives
briefly
presented.
It
hoped
that
this
would
provide
new
insights
guidelines
rational
manipulation
of
Journal of Materials Chemistry C,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 1, 2025
The
mixture
of
persistent
blue
and
deep
red-emitting
systems
is
suitable
for
currency
QR
code
anti-counterfeiting
due
to
the
emission
as
plant
growth
lighting
their
overlapping
with
pigments’
absorption.
Abstract
Mechanoluminescence
is
a
smart
light‐emitting
phenomenon
in
which
applied
mechanical
energy
directly
converted
into
photon
emissions.
In
particular,
mechanoluminescent
materials
have
shown
considerable
potential
for
applications
the
fields
of
and
sensing.
This
study
thoroughly
investigates
mechanoluminescence
long
afterglow
properties
singly
doped
codoped
Sr
2
MgSi
O
7
(SMSO)
with
varying
concentrations
Eu
2+
Dy
3+
ions.
Subsequently,
comprehensive
analysis
its
multimode
luminescence
properties,
including
photoluminescence,
mechanoluminescence,
afterglow,
X‐ray‐induced
luminescence,
conducted.
addition,
density
states
mapping
acquired
through
first‐principles
calculations,
confirming
that
enhanced
SMSO
primarily
stem
from
deep
trap
introduced
by
.
contrast
to
traditional
mixing
Polydimethylsiloxane,
this
study,
powders
are
incorporated
optically
transparent
wood
produce
multiresponse
X‐ray‐excited
luminescence.
structure
achieved
pretreating
natural
wood,
eliminating
lignin,
subsequently
modifying
overall
modification
using
various
phosphors
epoxy
resin
composites.
After
drying,
multifunctional
composite
diverse
obtained.
Owing
environmental
friendliness,
sustainability,
self‐power,
cost‐effectiveness,
anticipated
find
extensive
construction
energy‐efficient
displays.
Inorganic Chemistry,
Год журнала:
2023,
Номер
62(31), С. 12434 - 12444
Опубликована: Июль 27, 2023
A
0.25%
iron
(Fe3+)-doped
LiGaO2
phosphor
was
synthesized
by
a
high-temperature
solid-state
reaction
method.
The
characterized
utilizing
X-ray
diffraction
(XRD),
scanning
electron
microscopy
(SEM),
high-pressure
photoluminescence,
and
photoluminescence
decay
measurement
techniques
using
diamond
anvil
cells
(DACs).
powder
analysis
shows
that
the
is
β
polymorph
of
with
an
orthorhombic
crystallographic
structure
at
room
temperature.
SEM
result
also
confirms
presence
well-dispersed
micro-rod-like
structures
throughout
sample.
studies
in
near-infrared
(NIR)
range
were
performed
ambient,
low-temperature,
conditions.
exhibits
band
around
746
nm
related
to
4T1
→
6A1
transition
28%
quantum
efficiency
ambient
conditions,
which
shifts
toward
longer
wavelengths
increase
pressure.
excitation
spectra
Fe3+
are
very
well
fitted
Tanabe-Sugano
crystal-field
theory.
luminescence
decays
millisecond
lifetime.
application
transforms
into
trigonal
α
pressure
about
3
GPa.
Further
quenches
due
amorphization
process
material.
prepared
mechanoluminescence
properties
NIR
spectral
region.