Core-shell structured lead sulfide encapsulated Co-MOF as a battery-type electrode for supercapattery
K. R. Padmavathi,
No information about this author
special to C EN Lakshmi Supriya,
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V. Siva
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et al.
Journal of Alloys and Compounds,
Journal Year:
2025,
Volume and Issue:
unknown, P. 179423 - 179423
Published: Feb. 1, 2025
Language: Английский
Gold on the Horizon: Unveiling the Chemistry, Applications and Future Prospects of 2D Goldene (Au-ene)
Nanoscale Advances,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Jan. 1, 2024
A
family
of
2D
monolayers
gold
nanoparticles
exhibits
unique
physicochemical
properties.
This
review
explores
their
formation,
assembly,
key
interactions,
applications,
challenges,
and
future
prospects.
Language: Английский
Insight into phase stability and mechanical behavior of HfB2 and HfB12 under high pressures and high temperatures: A first−principles investigation
Natthapong Jampaiboon,
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Chayanon Atthapak,
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Wiwittawin Sukmas
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et al.
Computational Materials Science,
Journal Year:
2025,
Volume and Issue:
249, P. 113662 - 113662
Published: Jan. 15, 2025
Language: Английский
Acoustic shock wave treatment as a pathway to enhance the specific capacitance of selenium-based layered chalcogenides for supercapacitor applications
F. Irine Maria Bincy,
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S. Oviya,
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Raju Suresh Kumar
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et al.
New Journal of Chemistry,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
The
variation
plot
of
the
specific
capacitance
Bi
2
Se
3
and
CdSe
versus
number
shock
pulses,
proposed
mechanism
electrical
resistance
performance
before
after
wave
treatment.
Language: Английский
Recent Advances in Mesoporous Carbon Nitride-Based Materials for Electrochemical Energy Storage and Conversion and Gas Storage
Mustapha Balarabe Idris,
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Zaharaddeen Musa Mohammed,
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Sadiya Nuhu
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et al.
ACS Omega,
Journal Year:
2025,
Volume and Issue:
unknown
Published: May 1, 2025
Mesoporous
carbon
nitride
(MCN)
is
a
fascinating
material
with
enhanced
textural
properties,
tailored
morphology
and
enriched
surface
functionalities.
Hence,
it
demonstrates
promising
performance
in
various
applications.
Over
the
years,
methods
such
as
hard
template,
soft
template-free,
etc.
have
been
adopted
toward
preparation
of
MCN
controlled
structural
properties.
Furthermore,
exciting
properties
fine-tuned
by
controlling
tuning
functionalities,
including
type
amount
nitrogen,
via
simple
adjustment
precursors,
carbonization
temperature
nature
structure-directing
agents/hard
template.
Besides
these,
integration
conductive
carbon,
heteroatoms,
metal-based
materials,
organic
molecules,
was
found
to
not
only
enhance
MCN's
already
existing
applications
but
also
open
up
more
The
present
Review
begins
providing
general
overview
salient
features
MCN,
which
dictate
its
Then,
discusses
trends
MCN-based
areas
electrochemical
energy
storage
conversion
gas
past
decade.
structure-property
relationships
materials
above-mentioned
are
discussed
detail.
Emphasis
given
role
synthetic
approach
precursor(s)
used
textural,
morphological
chemical
composition
obtaining
final
product
improved
performance.
Moreover,
effects
modifications
key
on
discussed.
Finally,
current
challenges
perspectives
provided,
thereby
guiding
future
research
field
for
storage.
Language: Английский
Electrochemical performance enhancement of lanthanum nickelate by Sr doping for supercapacitor application
Discover Electrochemistry.,
Journal Year:
2025,
Volume and Issue:
2(1)
Published: May 28, 2025
Language: Английский
SnO₂@ZIF-8 Core–shell structured nanocrystallites: Structural and Electrochemical investigation
M. Renugadevi,
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N. Meenakshi Sundaram,
No information about this author
V. Siva
No information about this author
et al.
Journal of Nanoparticle Research,
Journal Year:
2025,
Volume and Issue:
27(6)
Published: June 1, 2025
Language: Английский
Ionic Diodes: Pioneering the Future of Ionotronics in Electronics and Beyond
Zhuoyao Shi,
No information about this author
Pin Liu,
No information about this author
Guoyin Zhu
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et al.
ACS Applied Materials & Interfaces,
Journal Year:
2025,
Volume and Issue:
unknown
Published: June 3, 2025
The
exploration
in
ionotronics
has
driven
the
advancement
several
emerging
fields,
including
energy
storage,
bioelectronics,
flexible
electronics,
and
human-machine
interactions.
Among
these,
ionic
diode
devices
that
use
ions
as
charge
carriers
have
been
extensively
explored,
exhibiting
significant
potential
for
integrating
biology
electronics.
Unlike
traditional
diodes,
diodes
not
only
perform
rectification
but
also
enable
novel
functions
properties
(sensing,
harvesting,
biological
detection).
This
account
comprehensively
summarizes
recent
advancements
challenges
associated
with
diodes.
It
begins
an
overview
of
various
designs,
categorized
into
rigid
types,
to
give
a
clearer
understanding
this
evolving
field.
manifest
notably
high
ratio
1600,
exceptional
performance,
while
their
counterparts
achieve
approximately
200,
realizing
trade-off
between
flexibility
electronic
performance.
Typically,
gel
which
exemplify
promising
blend
bionics
are
highlighted.
Next,
applications
sensors,
logic
gates,
environmental
detection
thoroughly
discussed.
Lastly,
strategies
enhance
performance
explored
along
insights
future
development.
review
delves
mechanisms,
offering
researchers
paving
way
innovative
Language: Английский