Functional gel materials for next-generation electrochromic devices and applications
Yuyang Wang,
No information about this author
Sun Xiao-yan,
No information about this author
Quanbing Liu
No information about this author
et al.
Chemical Society Reviews,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
This
review
underscores
the
essential
role
of
gel
materials
in
electrochromic
technology,
offering
a
comprehensive
analysis
gelation
chemistry
and
valuable
insights
into
practical
deployment
gel-based
devices.
Language: Английский
Versatile, Adaptable, and Stretchable Electrochromic Energy Storage Systems
Polymers for Advanced Technologies,
Journal Year:
2025,
Volume and Issue:
36(3)
Published: March 1, 2025
ABSTRACT
Electrochromic
energy
storage
devices
(EESDs)
have
emerged
as
innovative
technologies
in
and
smart
materials,
generating
considerable
interest
for
numerous
applications,
such
wearables,
windows,
color‐changing
sunglasses.
EESDs
consist
of
two
primary
categories:
electrochromic
supercapacitors
(ESCs)
batteries
(ECBs).
These
are
particularly
appreciated
their
multifunctional
features,
which
allow
them
to
alter
color
response
different
charge
densities.
The
performance
efficiency
rely
on
three
essential
components:
(I)
the
current
collector
or
substrate
(cc/substrate),
serves
conductive
base
device;
(II)
electrolyte,
supports
ion
movement
improves
overall
electrochemical
performance;
(III)
materials
(ECMs),
responsible
changes
functions.
Careful
selection
optimization
these
components
crucial
enhancing
devices'
efficiency,
stability,
lifespan.
Advanced
flexible
stretchable
shown
significant
potential.
Their
natural
flexibility
facilitates
seamless
incorporation
into
curved
surfaces
diverse
shapes,
making
especially
suitable
wearable
other
cutting‐edge
applications.
However,
this
also
brings
challenges,
including
concerns
related
delamination,
material
dissociation,
degradation
over
time.
A
thorough
investigation
is
progressing
conversion
systems.
Grasping
vital
creating
sustainable
solutions
improving
capabilities.
Language: Английский
Electrochromic Efficiency in AxB(1−x)Oy-Type Mixed Metal Oxide Alloys
Z. Lábadi,
No information about this author
Noor Taha Ismaeel,
No information about this author
P. Petrik
No information about this author
et al.
International Journal of Molecular Sciences,
Journal Year:
2025,
Volume and Issue:
26(8), P. 3547 - 3547
Published: April 10, 2025
Electrochromic
materials
have
a
wide
range
of
energy-effective
applications,
such
as
in
mirrors,
smart
windows,
automobile
sunroofs,
and
display
devices.
The
electrochromic
behavior
mixed
metal
oxides
is
focused
on
this
review.
Extra
heat
absorbed
by
buildings
one
the
major
problems
our
modern
era,
so
films
been
used
components
windows
to
reduce
absorption
through
glass
windows.
Transition
(W,
V,
Ti,
Mo,
Ni)
are
considered
popular
for
purpose.
Smart
consist
material
layers
(such
oxide
layers)
solid
electrolytes
sandwiched
between
transparent
conductive
layers.
Few
publications
studied
use
mixtures
different
materials.
This
study
focuses
results
investigations
multicomponent
materials,
effects
properties
how
they
contrast
with
pure
oxides.
Reviewing
these
papers,
we
found
WO3-
MoO3-based
be
most
promising,
especially
magnetron-sputtered,
amorphous
WO3(40%)–MoO3(60%)
composition,
which
had
200–300
cm2/C
coloration
efficiency.
reported
review
room
development
(and
even
commercialization)
oxide-based
device
market.
Language: Английский