Advanced Materials,
Journal Year:
2024,
Volume and Issue:
36(47)
Published: Oct. 6, 2024
Abstract
The
development
of
stimuli‐responsive
and
color‐tunable
chiral
organic
afterglow
materials
has
attracted
great
attention
but
remains
a
daunting
challenge.
Here,
simple
yet
effective
strategy
through
the
construction
dynamic
H‐bonding
network
is
proposed
to
explore
multi‐color
by
doping
self‐designed
phosphorescent
chromophore
into
polyvinyl
alcohol
matrix.
A
deep
blue
system
with
lifetime
up
3.35
s,
quantum
yield
25.0%,
luminescent
dissymmetry
factor
0.05
achieved
reversible
formation
breakdown
upon
thermal‐heating
water‐fumigating.
Moreover,
can
be
obtained
energy
transfer,
allowing
establishment
information
displays
high‐level
4D
encryption.
This
work
not
only
offers
facile
platform
develop
advanced
also
opens
new
avenue
for
developing
next‐generation
optical
technology
enhanced
functionality
responsiveness.
Chemical Society Reviews,
Journal Year:
2023,
Volume and Issue:
53(2), P. 606 - 623
Published: Dec. 15, 2023
This
review
highlights
the
recent
advances
and
discusses
challenges
perspectives
of
stimulus-responsive
polymer
(SRP)-based
information-storage
materials,
which
exhibit
multi-mode
or
multi-level
anti-counterfeiting
performance.
Angewandte Chemie International Edition,
Journal Year:
2023,
Volume and Issue:
62(48)
Published: Aug. 31, 2023
The
development
of
chiral
optical
active
materials
with
switchable
circularly
polarized
luminescence
(CPL)
signals
remains
a
challenge.
Here
an
azoarene-based
molecular
switch,
(S,
R,
S)-switch
1
and
(R,
R)-switch
2,
are
designed
prepared
(R)-binaphthyl
azo
group
as
photosensitive
moiety
two
(S)-
or
fluorescent
molecules
opposite
the
same
handedness
moieties.
Both
switches
exhibit
reversible
trans/cis
isomerization
when
irradiated
by
365
nm
UV
light
520
green
in
solvent
liquid
crystal
(LC)
media.
In
contrast
control
switch
is
doped
into
nematic
LCs,
polarization
inversion
switching-off
CPL
achieved
resultant
helical
superstructure
upon
irradiation
light,
respectively.
Meanwhile,
fluorescence
intensity
system
basically
unchanged
during
this
switching
process.
particular,
these
variations
could
be
recovered
after
heating,
realizing
true
sense
switching.
Taking
advantage
unique
switching,
proof-of-concept
for
"a
dual-optical
information
encryption
system"
based
on
above
material
demonstrated.
Angewandte Chemie International Edition,
Journal Year:
2023,
Volume and Issue:
62(48)
Published: Oct. 11, 2023
Abstract
Information
security
has
gained
increasing
attention
in
the
past
decade,
leading
to
development
of
advanced
materials
for
anti‐counterfeiting,
encryption
and
instantaneous
information
display.
However,
it
remains
challenging
achieve
high
with
simple
procedures
low‐energy
stimuli.
Herein,
a
series
strain/temperature‐responsive
liquid
crystal
elastomers
(LCEs)
are
developed
dual‐modal,
multi‐level
real‐time,
rewritable
transient
The
as‐prepared
polydomain
LCEs
can
change
from
an
opaque
state
transparent
under
strain
or
temperature
stimuli,
transition
strains
temperatures
highly
dependent
on
concentration
long‐chain
flexible
spacers.
encrypted
by
different
LCE
inks
be
decrypted
specific
temperatures,
protection
security.
Furthermore,
combination
phase
photothermal
effect
multi‐walled
carbon
nanotubes
(MWCNTs),
we
achieved
repeatable
display
using
near‐infrared
(NIR)
light
as
pen
writing.
This
study
provides
new
insight
into
versatility
broad
applications.
Angewandte Chemie International Edition,
Journal Year:
2024,
Volume and Issue:
63(17)
Published: March 8, 2024
Circularly
polarized
luminescence
(CPL)
plays
a
pivotal
role
in
cutting-edge
display
and
information
technologies.
Currently
achieving
precise
color
control
dynamic
signal
regulation
CPL
still
remains
challenging
due
to
the
elusory
relationship
between
fluorescence
chirality.
Inspired
by
natural
mechanisms
governing
formation
chiral
interaction,
we
proposed
an
addition-subtraction
principle
theory
address
this
issue.
Three
fluorene-based
polymers
synthesized
Suzuki
polycondensation
with
different
electron-deficient
monomers
exhibit
similar
structures
UV/Vis
absorption,
but
distinct
emissions
intramolecular
charge
transfer.
Based
on
this,
precise-color
CPL-active
films
are
obtained
through
quantitative
supramolecular
co-assembly
directed
addition
principle.
Particularly,
ideal
white-emitting
film
(CIE
coordinates:
(0.33,
0.33))
is
facilely
fabricated
high
quantum
yield
of
80.8
%
dissymmetry
factor
(g
Chemical Reviews,
Journal Year:
2024,
Volume and Issue:
124(9), P. 5930 - 6050
Published: April 30, 2024
Since
the
last
century,
we
have
witnessed
development
of
molecular
magnetism
which
deals
with
magnetic
materials
based
on
species,
i.e.,
organic
radicals
and
metal
complexes.
Among
them,
broadest
attention
was
devoted
to
molecule-based
ferro-/ferrimagnets,
spin
transition
materials,
including
those
exploring
electron
transfer,
nanomagnets,
such
as
single-molecule
magnets
(SMMs),
qubits,
stimuli-responsive
materials.
Their
physical
properties
open
application
horizons
in
sensors,
data
storage,
spintronics,
quantum
computation.
It
found
that
various
optical
phenomena,
thermochromism,
photoswitching
characteristics,
luminescence,
nonlinear
chiroptical
effects,
well
responsivity
external
stimuli,
can
be
implemented
into
Moreover,
fruitful
interactions
these
effects
provide
new
cross-effects
multifunctionality,
enriching
applications
optical,
electronic,
devices.
This
Review
aims
show
scope
phenomena
generated
recent
advances
areas
high-temperature
photomagnetism,
thermometry
utilizing
SMMs,
addressability
magneto-chiral
dichroism,
opto-magneto-electric
multifunctionality.
These
findings
are
discussed
context
types
accessible
for
classes
Abstract
Polymer-based
circularly
polarized
luminescence
(CPL)
materials
with
the
advantage
of
diversified
structure,
easy
fabrication,
high
thermal
stability,
and
tunable
properties
have
garnered
considerable
attention.
However,
adequate
precise
tuning
over
CPL
in
polymer-based
remains
challenging
due
to
difficulty
regulating
chiral
structures.
Herein,
visualized
full-color
is
achieved
by
doping
red,
green,
blue
quantum
dots
(QDs)
into
reconfigurable
phase
liquid
crystal
elastomers
(BPLCEs).
In
contrast
signal
observed
cholesteric
(CLCEs),
3D
cubic
superstructure
BPLCEs
induces
an
opposite
signal.
Notably,
this
effect
entirely
independent
photonic
bandgaps
(PBGs)
results
a
g
lum
value,
even
without
matching
between
PBGs
emission
bands
QDs.
Meanwhile,
lattice
structure
can
be
reversibly
switched
via
mechanical
stretching
force,
inducing
on-off
switching
signals,
these
variations
further
fixed
using
dynamic
disulfide
bonds
BPLCEs.
Moreover,
smart
systems
for
anti-counterfeiting
information
encryption
been
demonstrated,
suggesting
great
potential
BPLCEs-based
active
materials.
Nature Communications,
Journal Year:
2024,
Volume and Issue:
15(1)
Published: Jan. 4, 2024
Abstract
Colorful
circularly
polarized
luminescence
materials
are
desired
for
3D
displays,
information
security
and
asymmetric
synthesis,
in
which
single-emitted
ideal
owing
to
self-absorption
avoidance,
evenly
entire-visible-spectrum-covered
photon
emission
facile
device
fabrication.
However,
restricted
by
the
synthesis
of
chiral
broad-luminescent
emitters,
realization
application
high-performing
full-color
is
its
infancy.
Here,
we
disclose
a
system
(spiral
generator),
composed
whole-vis-spectrum
emissive
quantum
dots
liquid
crystals.
The
achieves
maximum
dissymmetry
factor
0.8
remains
an
order
10
−1
visible
region
tuning
photonic
bandgap.
We
then
expand
it
series
customized-color
luminescence,
build
devices
further
demonstrate
working
scenario
photoinduced
enantioselective
polymerization.
This
work
contributes
design
efficient
chiroptical
materials,
fabrication
synthesis.
Advanced Materials,
Journal Year:
2024,
Volume and Issue:
36(24)
Published: Feb. 29, 2024
Abstract
The
development
of
bright
and
long‐lived
aqueous
room‐temperature
phosphorescent
(RTP)
materials
holds
paramount
importance
in
broadening
the
application
scope
RTP
material
system.
However,
conventional
usually
exhibit
low
efficiency
short
lifetime
solution.
Herein,
an
situ
host–guest
strategy
is
proposed
to
achieve
cyanuric
acid
(CA)‐derived
carbon
nitrogen
dots
(CNDs)
composite
(CNDs@CA)
that
demonstrates
a
significant
enhancement
both
quantum
yield
(QY)
mediated
by
water.
Detailed
investigations
reveal
robust
hydrogen
bonding
networks
between
CNDs@CA
water
effectively
stabilize
triplet
excitons
suppress
nonradiative
decays,
as
well
facilitate
efficient
energy
transfer
from
CA
CNDs,
thereby
prolonging
enhancing
RTP.
QY
can
be
increased
26.89%
(3.9‐fold
increase)
951.25
ms
(5.5‐fold
increase),
respectively,
with
incorporation
50
wt%
under
ambient
conditions.
Even
fully
environments
(with
up
400
added),
exhibits
persistent
water‐boosted
properties,
demonstrating
exceptional
stability.
property
solutions
presents
potential
for
high
signal‐to‐noise
ratio
afterglow
bioimaging
advanced
information
encryption.
Nature Communications,
Journal Year:
2024,
Volume and Issue:
15(1)
Published: April 9, 2024
Abstract
Creating
circularly
polarized
organic
afterglow
system
with
elevated
triplet
energy
levels,
suppressed
non-radiative
transitions,
and
effective
chirality,
which
are
three
critical
prerequisites
for
achieving
blue
afterglow,
has
posed
a
formidable
challenge.
Herein,
straightforward
approach
is
unveiled
to
attain
materials
by
covalently
self-confining
isolated
chiral
chromophore
within
polymer
matrix.
The
formation
of
robust
hydrogen
bonds
the
matrix
confers
distinctly
stabilized
molecular
state
chromophores,
endowing
emission
band
at
414
nm,
lifetime
3.0
s,
luminescent
dissymmetry
factor
~
10
−2
.
Utilizing
synergistic
chirality
transfer,
full-color
systems
endowed
doping
colorful
fluorescent
molecules
into
designed
polymers,
empowering
versatile
applications.
This
work
paves
way
streamlined
design
materials,
expanding
horizons
various
domains.
Deleted Journal,
Journal Year:
2024,
Volume and Issue:
2(1)
Published: Feb. 1, 2024
Abstract
For
centuries,
humans
have
never
stopped
exploring
the
nature
of
light
and
manipulating
it,
since
carries
multiple
information
through
its
intrinsic
wave‐particle
dualism,
including
wavelength,
amplitude,
phase,
polarization,
spin/orbital
angular
momentum,
etc.,
which
determines
physical
language
basic
manners
we
perceive
objective
world.
Conventional
optical
devices,
such
as
lenses,
prisms,
lasers,
are
composed
solid
elements
that
bulky,
making
it
difficult
to
manipulate
dynamically
with
degrees‐of‐freedom.
Comparatively,
some
responsive
soft
matters,
especially
represented
by
liquid
crystals
(LCs),
possess
distinctive
orientational
order
spontaneous
self‐assembled
superstructures,
enabling
digital
programming
microstructures
degrees‐of‐freedom
manipulation
their
characteristics.
The
based
on
these
is,
“soft‐matter‐photonics”,
is
playing
an
impressive
role
in
integrated
functional
present
age
explosion.
Herein,
review
latest
advances,
respectively,
microstructure
configurations,
manipulations,
relevant
prospective
applications.
Additionally,
scientific
issues
technical
challenges
hinder
programing
operation
manipulations
discussed.
Toward
a
four‐dimensional
condensed
matter,
this
may
wide
implications
variety
applications,
fabrication
compact
elements,
multi‐channel
processing
high‐capacity
communications.