Unveiling the Racemization in Ferroelectrics with Coupled Ferroelectricity and Optical Activity
Xiang‐Bin Han,
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Chengdong Liu,
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Chang‐Qing Jing
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et al.
The Journal of Physical Chemistry Letters,
Journal Year:
2025,
Volume and Issue:
unknown, P. 642 - 649
Published: Jan. 9, 2025
The
most
distinctive
features
of
ferroelectrics
are
spontaneous
polarization
and
depolarization.
Ferroelectricity
was
first
observed
in
Rochelle
salt,
a
compound
with
chiral
component
which
the
molecular
chirality
is
not
affected
by
For
structurally
(SCFs),
such
as
triglycine
sulfate,
lacks
components,
depolarization
effect
on
presents
an
intriguing
unexplored
topic.
In
this
study,
we
focus
newly
proposed
optical
topic
optically
active
coupled
ferroelectricity
activity.
We
examined
activity
these
ferroelectric
materials
employed
chiral-environment
crystallization
solid-state
circular
dichroism
(CD)
techniques
to
elucidate
racemization-depolarization
mechanism
SCF
for
time.
polar
nonchiral
ferroelectrics,
averaged
out
powder
state,
resulting
no
CD
signal.
Additionally,
experimentally
validated
consistency
between
measurements
theory
across
four
point
groups
(m,
mm2,
4̅,
4̅2m).
These
findings
could
advance
development
spintronic
devices
leveraging
tune
spin
selectivity.
Language: Английский
Recent Advancements in Lung Cancer Metastasis Prevention Based on Nanostrategies
Fan Xu,
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Yao Liu,
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Zujun Que
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et al.
Advanced Science,
Journal Year:
2025,
Volume and Issue:
unknown
Published: March 26, 2025
Metastasis
is
the
leading
cause
of
death
in
patients
with
lung
cancer.
Multidisciplinary
comprehensive
treatments
(MDT),
including
surgery,
chemotherapy,
radiotherapy,
gene-targeted
therapy,
immunotherapy,
antibody-drug
conjugate
(ADC),
natural
products,
etc.,
have
been
currently
used
for
cancer
metastasis.
The
MDT
model
has
shown
promising
efficacy
against
metastasis
clinical
practice.
However,
these
therapies
some
limitations,
such
as
unusual
toxic
side
effects,
drug
resistance,
limited
indications,
and
high
costs.
Therefore,
emerging
technological
platforms
are
imperative
to
overcome
bottlenecks.
Nanomedicine
can
be
prepare
efficient
delivery
systems
owing
its
good
biocompatibility,
targeting,
responsive
release,
multidrug
codelivery
plays
an
important
role
synergistic
antimetastasis
because
optical,
acoustic,
electrical,
thermal,
magnetic
functions.
This
review
analyses
limitations
model,
briefly
outlines
advantages
nanotechnology,
introduces
nanodrug
systems,
summarizes
nanostrategies
based
on
invasion-metastasis
cascade
process,
provides
a
summary
prospects
challenges
translation
nanomedicines.
Language: Английский