Ionothermal synthesis of a hybrid cuprous(I) iodide scintillator with efficient cyan emission and high antiwater stability
Qinghua Zou,
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Wenhao Yang,
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Ling-Kun Wu
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et al.
Chemical Engineering Journal,
Journal Year:
2025,
Volume and Issue:
unknown, P. 159971 - 159971
Published: Jan. 1, 2025
Language: Английский
Component/Stimulus‐Dependent Multi‐Exciton Emission in Zr(IV)‐Based Organic Metal Halides Triggered by Supramolecular Assembly and Antimony Doping
Hui Peng,
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Wei Tian,
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Qilin Wei
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et al.
Laser & Photonics Review,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 30, 2025
Abstract
Recently,
Sb
3+
‐activated
0D
Zr(IV)‐based
metal
halides
have
gained
enormous
attention
for
their
unique
optical
properties.
However,
realizing
efficient
white
emission
and
multiple
reversible
emissions
in
a
single
system
remains
great
challenge.
Parallelly,
the
currently
reported
organic
are
mainly
through
aimless
regulation
of
type
A‐site
cations,
severely
limiting
development.
Herein,
all‐inorganic
Cs
2
ZrCl
6
:Sb
is
employed
as
conformational
model,
three
different
compounds
‐doped
[18‐crown‐6@A]
(A
=
K,
Rb,
Cs)
developed
via
supramolecular
assembly.
All
show
tunable
with
luminous
efficiency
91.28%
[18‐crown‐6@K]
,
84.84%
[18‐crown‐6@Rb]
78.63%
[18‐crown‐6@Cs]
which
shall
stem
from
‐induced
multi‐exciton
[SbCl
]
3−
octahedron.
Particularly,
strong
interaction
can
enhance
structural
rigidity
suppress
nonradiative
transitions,
dominated
reason
exhibits
emission.
The
component/excitation/temperature/moisture‐dependent
PL
switching
characteristics
observed
allows
to
demonstrate
applications
advanced
anti‐counterfeiting
information
encryption.
Moreover,
single‐component
light‐emitting
diode
also
fabricated,
shows
high
color
rendering
index
96.1.
Therefore,
work
provides
feasible
scheme
designing
Zr(IV)
fascinating
Language: Английский
Halogen Engineering Enables Tunable Dielectric Response and Dimensional Regulation in Organic–Inorganic Hybrid Halides
Lei Pan,
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Gele Teri,
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Cha-Hui Du
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et al.
Crystal Growth & Design,
Journal Year:
2025,
Volume and Issue:
25(5), P. 1597 - 1604
Published: Feb. 24, 2025
Organic–inorganic
metal
halides
(OIMHs)
have
attracted
great
interest
in
the
design
of
various
functional
materials
due
to
their
advantages
easy
processability,
rich
structural
diversity,
and
assembly
flexibility.
However,
rational
control
stacking
patterns
OIMHs
for
regulation
has
been
a
long-standing
challenge.
Particularly,
little
is
known
about
intrinsic
relationship
between
dimensions
dielectric
response
at
molecular
scale.
Here,
we
investigated
modulation
effect
cationic
halogen
engineering
(N,N-dimethylethanolamine)PbBr3
on
stacking,
as
well
its
impact
thermal,
electrical,
optical
physical
properties.
Halogen
brings
varied
from
one-dimensional
(1D)
hexagonal
perovskite
structure
two-dimensional
(2D)
layered
an
interlocking
1D
chain
structure.
These
attributes
demonstrated
be
closely
related
interactions
crystal
lattice,
leading
variation
sequential
increase
phase
transition
temperature
differences
response,
with
similar
bandgaps
that
are
mainly
determined
by
inorganic
frameworks.
This
study
offers
new
insights
into
performance
optimization
organic–inorganic
hybrids.
Language: Английский
Dual-Emissive Luminescence in OIHMH Single Crystals: Tunable Red-Green Emissions via Mn2+ Doping and Theoretical Insights
Chemical Science,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Jan. 1, 2024
This
research
elucidates
the
theoretical
underpinnings
of
tunable
luminescence
in
Mn
2+
-doped
0D
hybrid
perovskite
C
6
H
14
N
2
CdBr
4
,
paving
way
for
advanced
anti-counterfeiting
materials
with
precise
color
regulation
capabilities.
Language: Английский
Zero-Dimensional Organic-inorganic Hybrid Indium Halide Perovskite with Broadband Yellow Light Emission
Qi Wang,
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Wei Jiang,
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Peng-Yao Xuan
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et al.
CrystEngComm,
Journal Year:
2024,
Volume and Issue:
26(45), P. 6486 - 6492
Published: Jan. 1, 2024
0D
indium
halide
[1-Me-Pipz]
2
[InCl
6
]Cl·H
O
exhibits
strong
broadband
yellow
emission
with
a
high
PLQY
of
52%.
This
crystal
also
demonstrated
excellent
structural
and
spectral
stability,
allowing
its
use
in
efficient
white
light-emitting
diodes.
Language: Английский