Ternary composites based next-generation supercapacitors electrode material: Emerging trends
Esha Ghazanfar,
No information about this author
Hajira Zahoor,
No information about this author
Nasser S. Awwad
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et al.
Electrochemistry Communications,
Journal Year:
2025,
Volume and Issue:
unknown, P. 107893 - 107893
Published: Feb. 1, 2025
Language: Английский
In situ synthesis of SnPS3/Ti3C2T hybrid anode via molten salt etching method for superior sodium-ion batteries
Longsheng Zhong,
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Ming Yue,
No information about this author
Wenhu Xie
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et al.
Journal of Energy Chemistry,
Journal Year:
2024,
Volume and Issue:
98, P. 623 - 633
Published: July 20, 2024
Language: Английский
Layer-on-layer construction of amorphous cobalt-lanthanum sulfide arrays in situ grown on MXene‒C3N5 matrix for high energy density supercapacitors
Diab Khalafallah,
No information about this author
Qinfang Zhang
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Nano Materials Science,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Feb. 1, 2025
Language: Английский
Recent advances in multiple transition metal MXenes: Synthesis, properties, and applications in energy storage
Sheng Zhou,
No information about this author
Yunfeng Guan,
No information about this author
Lidan Tan
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et al.
Journal of Energy Storage,
Journal Year:
2025,
Volume and Issue:
120, P. 116419 - 116419
Published: April 7, 2025
Language: Английский
Effects of Intercalation on ML-Ti3C2Tz MXene Properties and Friction Performance
ACS Applied Materials & Interfaces,
Journal Year:
2024,
Volume and Issue:
16(46), P. 64156 - 64165
Published: Nov. 6, 2024
Intercalation
in
two-dimensional
(2D)
materials
can
modify
their
physical,
chemical,
and
electronic
properties.
This
modification
enables
the
tailoring
of
2D
material
characteristics,
enhancing
performance
expanding
applications
various
fields.
The
friction
such
as
MoS2
graphite
has
a
strong
dependence
on
interlayer
spacing,
they
exhibit
an
increase
d-spacing
associated
with
reduction
performance.
ability
to
control
spacing
Ti3C2Tz
MXene
proven
beneficial
for
energy
storage
batteries
supercapacitors,
but
no
one
utilized
this
lubrication.
In
study,
we
demonstrate
that
multilayer
(ML)
be
controlled
through
chemical
intercalation
its
direct
effects
electrical
conductivity
We
observed
notable
decrease
vacuum-filtered
ML-Ti3C2Tz
films,
which
was
attributed
increased
internal
resistance
resulting
from
expansion
gap.
also
found
significant
coefficient
d-spacing.
is
weakened
attraction
individual
layers
(intercalated).
Under
tangential
force,
it
becomes
easier
slide
within
larger
gap
van
der
Waals
forces.
work
provides
insights
into
tunability
properties
offering
potential
requiring
specific
characteristics.
Language: Английский
MoS2/TiO2 Heterostructures In Situ Constructed on Mo2Ti2C3Tx MXene for High-Rate and Stable Li+/Na+ Storage
L. Lu,
No information about this author
Dongliang Fan,
No information about this author
Zhi Cao
No information about this author
et al.
ACS Applied Nano Materials,
Journal Year:
2024,
Volume and Issue:
7(22), P. 25835 - 25846
Published: Nov. 6, 2024
Out-of-plane
ordered
Mo2Ti2C3Tx
MXene
is
composed
of
M-site
binary
metals
with
richer
structural
compositions
and
physicochemical
properties,
thus
becoming
a
potential
candidate
for
energy
storage
materials.
Here,
the
microstructures
pre-etched
were
cleverly
modified
by
hydrothermal
method
at
250
°C
sulfur-containing
atmosphere,
while
MoS2/TiO2
heterostructures
in
situ
constructed
on
MXene.
The
as-prepared
Mo2Ti2C3Tx@MoS2/TiO2
hybrids
deliver
excellent
lithium/sodium
especially
outstanding
rate
properties
robust
cycling
stability.
At
5
A
g–1,
provides
reversible
Li+
(377.8
mAh
g–1)/Na+
(133.5
g–1)
capacity.
Capacity
preservation
reaches
83.7%/74%
over
4500/30,000
cycles
LIBs/SIBs.
This
paper
highlights
importance
rational
modification
utilizing
rich
metal
M-sites
MXene,
effectively
enhancing
its
capacity
broadening
further
application
double
transition
secondary
batteries.
Language: Английский