ACS Applied Materials & Interfaces,
Год журнала:
2024,
Номер
16(12), С. 15242 - 15250
Опубликована: Март 14, 2024
A
coordination
complex,
Eu(C12C12dbm)3(phen),
with
strong
emission
and
a
high
quantum
yield
(QY
∼
51.9%)
was
synthesized.
The
EuIII
as
fluorescent
emitter,
embedded
in
cholesteric
liquid
crystal
polymer
networks
(CLCNs).
series
of
free-standing
EuIII-CLCN
films
were
obtained,
generating
typical
sharp
band
corresponding
to
the
complex.
Tunable
handedness
circularly
polarized
luminescence
(CPL)
|glum|
values
(up
0.63)
observed.
CPL-active
CLCN-coated
PET
also
prepared
(|glum|
up
0.63),
which
can
be
used
for
large-area
preparations.
Moreover,
by
stacking
an
emitter-embedded
PMMA
layer
CLCN
layer,
composite
system
built,
large
value
(∼1.42)
achieved.
Fluorescence
patterns
prepared,
distinct
images
recognized
under
both
daylight
UV
light.
This
work
not
only
demonstrated
that
compounds
could
incorporated
prepare
materials
but
provided
new
perspective
emissive
anticounterfeiting
encryption.
Nature Communications,
Год журнала:
2023,
Номер
14(1)
Опубликована: Май 25, 2023
Materials
with
phototunable
full-color
circularly
polarized
luminescence
(CPL)
have
a
large
storage
density,
high-security
level,
and
enormous
prospects
in
the
field
of
information
encryption
decryption.
In
this
work,
device-friendly
solid
films
color
tunability
are
prepared
by
constructing
Förster
resonance
energy
transfer
(FRET)
platforms
chiral
donors
achiral
molecular
switches
liquid
crystal
photonic
capsules
(LCPCs).
These
LCPCs
exhibit
photoswitchable
CPL
from
initial
blue
emission
to
RGB
trichromatic
signals
under
UV
irradiation
due
synergistic
effect
chirality
show
strong
time
dependence
because
different
FRET
efficiencies
at
each
node.
Based
on
these
response
characteristics,
concept
multilevel
data
using
LCPC
is
demonstrated.
Nano-Micro Letters,
Год журнала:
2022,
Номер
15(1)
Опубликована: Ноя. 28, 2022
Abstract
In
nature,
many
living
organisms
exhibiting
unique
structural
coloration
and
soft-bodied
actuation
have
inspired
scientists
to
develop
advanced
colored
soft
actuators
toward
biomimetic
robots.
However,
it
is
challenging
simultaneously
biomimic
the
angle-independent
color
shape-morphing
capabilities
found
in
plum-throated
cotinga
flying
bird.
Herein,
we
report
MXene-based
with
that
are
fabricated
through
controlled
self-assembly
of
colloidal
SiO
2
nanoparticles
onto
highly
aligned
MXene
films
followed
by
vacuum-assisted
infiltration
polyvinylidene
fluoride
into
interstices.
The
resulting
exhibit
brilliant,
color,
as
well
ultrafast
recovery
speeds
(a
maximum
curvature
0.52
mm
−1
can
be
achieved
within
1.16
s,
a
time
~
0.24
s)
response
acetone
vapor.
As
proof-of-concept
illustrations,
applied
demonstrate
blue
gripper-like
bird’s
claw
capture
target,
artificial
green
tendrils
twine
around
tree
branches,
an
multicolored
butterfly
flutter
its
wings
upon
cyclic
exposure
strategy
expected
offer
new
insights
development
multifunctional
for
somatosensory
robotics
next-generation
intelligent
machines.
Angewandte Chemie International Edition,
Год журнала:
2022,
Номер
61(42)
Опубликована: Сен. 2, 2022
Developing
bioinspired
camouflage
materials
that
can
adaptively
change
color
in
the
visible
and
infrared
(IR)
regions
is
an
intriguing
but
challenging
task.
Herein,
we
report
emerging
strategy
for
fabricating
dynamic
IR
by
controlled
situ
growth
of
novel
photopolymerizable
blue
phase
liquid
crystals
with
cubic
nanoarchitectures
onto
highly
aligned
MXene
nanostructured
thin
films.
The
resulting
MXene-integrated
3D
soft
photonic
exhibit
vivid
structural
colors
reversible
switching
between
a
bright
colored
state
dark
black
under
low
DC
electric
field.
As
illustration,
proof-of-concept
pixelated
devices
allow
pixel-controllable
electrochromism
are
demonstrated.
Furthermore,
free-standing
electrochromic
flexible
film
such
fabricated,
where
thermal
enabled
leveraging
superior
electrothermal
conversion
mid-IR
emissivity
nanomaterials.
Endowing
three-dimensional
(3D)
displays
with
flexibility
drives
innovation
in
the
next-generation
wearable
and
smart
electronic
technology.
Printing
circularly
polarized
luminescence
(CPL)
materials
on
stretchable
panels
gives
chance
to
build
desired
flexible
stereoscopic
displays:
CPL
provides
unusual
optical
rotation
characteristics
achieve
considerable
contrast
ratio
wide
viewing
angle.
However,
lack
of
printable,
intense
suitable
for
processing
hinders
implementation
3D
devices.
Here,
we
report
a
controllable
macroscopic
production
printable
CPL-active
photonic
paints
using
designed
confining
helical
co-assembly
strategy,
achieving
maximum
dissymmetry
factor
(glum)
value
1.6.
We
print
customized
graphics
meter-long
luminous
coatings
these
range
substates
such
as
polypropylene,
cotton
fabric,
polyester
fabric.
then
demonstrate
textile
display
panel
two
printed
sets
pixel
arrays
based
orthogonal
emission,
which
lays
an
efficient
framework
future
intelligent
clothing.
Abstract
Circularly
polarized
luminescent
(CPL)
materials
have
received
significant
attention
in
the
field
of
fundamental
science
recently.
These
offer
substantial
advancement
technological
applications,
such
as
optical
data
storage,
displays,
and
quantum
communication.
Various
strategies
been
proposed
self‐assembled
consisting
inorganic,
organic,
hybrid
systems,
particularly
chiral
orientationally
ordered
soft
matter
systems
(e.g.,
liquid
crystals
(LCs)
LC
polymers).
However,
developing
scientific
approaches
to
achieve
pronounced
steerable
circularly
light
emission
remains
challenging.
Herein,
we
present
a
comprehensive
review
on
recent
development
CPL
based
LCs,
including
thermotropic
LCs
(cholesteric
bent‐core
LCs),
lyotropic
(nanocellulose
polyacetylene‐based
polymers
LC‐based
polymers,
helical
nanofibers,
network).
In
addition,
mechanisms,
design
principles,
potential
applications
these
are
systematically
reviewed.
This
summarizes
with
prospect
latent
challenges,
which
can
strengthen
our
understanding
basic
principles
provide
new
insight
into
progress
several
fields,
chemistry,
science,
optics,
electronics,
biology.
Advanced Optical Materials,
Год журнала:
2023,
Номер
11(6)
Опубликована: Янв. 19, 2023
Abstract
Chiral
materials
capable
of
generating
circularly
polarized
luminescence
(CPL)
have
gained
rapidly
growing
research
interest
by
virtue
their
peculiar
photophysical
characteristics
and
far‐reaching
applications.
Amongst
various
CPL
materials,
polymer‐based
constituted
an
important
class
owing
to
abundant
types,
ease
manufacture,
high
thermal
stability,
as
well
as,
tunable
properties.
The
present
work
reviews
the
latest
advances
in
constructing
which
are
classified
based
on
interaction
modes
between
chiral
luminescent
components,
that
is,
covalent
interaction,
non‐covalent
without
interactions.
newly
emerging
categories
nonconventional
fluorescence‐based
room
temperature
phosphorescence,
with
thermally
activated
delayed
fluorescence
properties
also
presented.
Typical
applications
emitters
organic
light‐emitting
diodes,
information
security
encryption,
optical
sensors
further
discussed.
Additionally,
current
challenges
future
perspectives
this
field
summarized.
This
review
article
is
expected
stimulate
more
unprecedented
achievements
derived
from
thus
promoting
practical
Advanced Materials,
Год журнала:
2023,
Номер
35(29)
Опубликована: Апрель 6, 2023
Stimulus-responsive
materials
that
display
circularly
polarized
luminescence
(CPL)
have
attracted
great
attention
for
application
in
chiral
sensors
and
smart
displays.
However,
due
to
difficulties
the
regulation
of
structures,
fine
control
CPL
remains
a
challenge.
Here,
it
is
demonstrated
cellulose
nanocrystal
shape-memory
polymers
(CNC-SMPs)
with
luminescent
components
enable
mechanically
responsive
CPL.
The
nematic
organization
CNCs
material
gives
rise
photonic
bandgap.
By
manipulating
bandgap
or
wavelengths
CNC-SMPs,
precise
emission
varied
high
dissymmetry
factors
(glum
)
achieved.
Specifically,
can
be
switched
reversibly
by
treating
CNC-SMPs
hot-pressing
recovery
heating.
Pressure-responsive
tunable
glum
values
ascribed
pressure-responsive
bandgaps.
Moreover,
colorimetric
CPL-active
patterns
are
created
imprinting
desired
forms
into
SMP
samples.
This
study
demonstrates
novel
way
fabricate
systems
using
biomaterials.
Materials Horizons,
Год журнала:
2023,
Номер
11(1), С. 217 - 226
Опубликована: Окт. 20, 2023
Ionic
conductive
cholesteric
liquid
crystal
elastomers
with
dynamic
color-changing
and
electrical
sensing
functions
were
developed
through
the
integration
of
polymer
ionic
networks.
Chemistry - A European Journal,
Год журнала:
2023,
Номер
29(22)
Опубликована: Янв. 24, 2023
Abstract
Circularly
polarized
luminescence
(CPL)
has
attracted
much
interest
due
to
its
potential
applications
on
chiral
photonic
techniques
and
optoelectronic
materials
science.
As
known,
dissymmetry
factor
(
g
em
)
of
CPL
is
one
essential
for
evaluating
the
features
CPL‐active
materials.
Much
attention
focused
how
increase
value,
which
most
important
issues
practical
applications.
Recently,
more
works
have
demonstrated
that
supramolecular
could
provide
significant
strategy
improve
value
through
orderly
helical
superstructure
building
blocks.
Normally,
this
kind
assembly
process
can
be
accompanied
by
chirality
transfer
induction
mechanism,
promote
amplification
effect
induced
achiral
dyes.
In
review,
we
fully
summarized
recent
advances
co‐assemblies,
their
in
circularly
organic
light‐emitting
diodes
(CP‐OLEDs)
current
challenges.
Abstract
Compared
with
traditional
rigid
actuators,
soft
actuators
exhibit
a
large
number
of
advantages,
including
enhanced
flexibility,
reconfigurability,
and
adaptability,
which
motivate
us
to
develop
artificial
widespread
applications.
Soft
MXene
nanomaterials
are
regarded
as
highly
promising
candidates
for
advancing
the
development
bioinspired
robotics
consequence
their
unprecedented
physicochemical
characteristics,
such
high
electronic
conductivity,
thermal
photothermal
conversion
capability,
abundant
surface
functional
groups.
Herein,
comprehensive
overview
recent
advancement
extensive
applications
from
perspective
bioinspiration
is
provided.
First,
synthetic
methods
properties
briefly
summarized.
Subsequently,
(including
photoresponsive
electroresponsive
chemoresponsive
actuators)
sequentially
investigated
focus
on
fabrication
approaches,
actuation
properties,
underlying
mechanisms,
At
end,
future
challenges
opportunities
rapid
discussed.