This
work
emphasizes
the
procedure
with
three
stages,
including
a
forthright
hydrothermal
technique
for
synthesizing
composite
material
of
layered
MoSe2/rGO
and
MnO2
nanorods.
The
developed
electrodes
explicitly
show
supercapacitor
battery
storage
capability
(i.e.,
supercapattery),
unveiling
higher
operating
potential
value
energy
density.
is
mainly
attributed
to
structure
high
surface-to-volume
ratio
2D
nanosheets,
which
provide
rapid
charge
aptitudes,
enormous
active
sites,
decreased
electronic/ionic
resistance,
rich
electron
transfer
characteristics.
MnO2/MoSe2/rGO
has
an
optimum
surface
area
(78.24
m2
g-1)
immense
microspore
(12.9
nm),
due
construction
MoSe2
rGO
nanosheets.
robust
electrochemical
characteristics,
achieving
950
F
g-1
specific
capacitance
at
1
A
current
density
demonstrating
cyclic
stability
90%
after
10,000
continuous
cycles.
In
addition,
asymmetric
supercapattery
device
AC//MnO2/MoSe2/rGO
showcased
capacity
85.1
153.18
C
g-1,
as
well
achieved
power
30.2
W
h/kg
807
W/kg
in
1.8
V.
Also,
real-time
practical
tested
using
two
distinct
varieties
light-emitting
diodes
offered
effective
discharge
time
14
min.
enriched
performances
composites
extensive
features
may
have
expanded
realm
modern
materials.
ACS Nano,
Год журнала:
2024,
Номер
18(37), С. 25880 - 25892
Опубликована: Сен. 5, 2024
Aqueous
zinc-ion
batteries
(AZIBs)
exhibit
promising
prospects
in
becoming
large-scale
energy
storage
systems
due
to
environmental
friendliness,
high
security,
and
low
cost.
However,
the
growth
of
Zn
dendrites
side
reactions
remain
heady
obstacles
for
practical
application
AZIBs.
To
solve
these
challenges,
a
functionalized
Janus
separator
is
successfully
constructed
by
coating
halloysite
nanotubes
(HNTs)
on
glass
fiber
(GF).
Impressively,
different
electronegativity
inner
outer
surfaces
HNTs
endows
HNT-GF
with
ion-sieving
property,
leading
significantly
transference
number
Inorganic Chemistry Frontiers,
Год журнала:
2025,
Номер
unknown
Опубликована: Янв. 1, 2025
Based
on
the
excellent
performance
of
novel
high-entropy
hydroxides,
we
investigate
relationship
between
pseudocapacitive
and
catalytic
oxygen
evolution
in
alkaline
aqueous
electrolyte
systems.