Hierarchical nickel phosphide/carbon nanofibers for high performance pseudocapacitors
Haiying Li,
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Jiao‐Jing Shao,
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Zhong-Mei Huang
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et al.
Diamond and Related Materials,
Journal Year:
2024,
Volume and Issue:
149, P. 111641 - 111641
Published: Oct. 5, 2024
Language: Английский
Promotion of Photocatalytic Hydrogen Evolution under Visible Light with NiO/C Fabricated via a Super Facile and General Strategy
The Journal of Physical Chemistry C,
Journal Year:
2024,
Volume and Issue:
128(16), P. 6590 - 6599
Published: April 10, 2024
Exploration
of
efficient,
cost-effective,
abundant,
and
environmentally
friendly
catalysts
for
generating
clean
renewable
energy
resources
is
currently
highly
needed.
Here,
we
designed
a
photocatalyst
based
on
nickel
oxide(II)
nanoparticles
embedded
in
carbon
matrix
the
photocatalytic
hydrogen
evolution
reaction
(pHER).
A
super
facile
fabrication
strategy
involves
using
only
one
nontoxic
substrate
(nickel
acetate)
as
simultaneous
source
carbon.
The
catalyst
with
tuned
morphology
(via
process
time)
showed
superior
pHER
performance
yielding
7.4
mmol/h,
an
effect
synergy
between
graphitic
comes
from
(i)
conductive
properties
carbon,
(ii)
defects
present
matrix,
which
act
sites,
(iii)
NiO
nanoparticles,
improve
charge
carrier
separation
increasing
H2
rate.
mechanism
was
proposed
ex
situ
study
postprocessed
electron
paramagnetic
resonance
spectroscopy
(EPR),
X-ray
diffraction
(XRD),
Raman
spectroscopy,
photoelectron
(XPS).
What
more,
propose
general
simple
approach
to
deliver
carbon/metal
oxide
composites
different
metal
acetates
catalytically
active
materials
tunable
physicochemical
that
can
meet
requirements
processes.
Language: Английский
Cauliflower-like Ni/NiCoP@Boron-doped diamond composite electrodes for high-performance symmetric supercapacitors
Meiling Cen,
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Jiao‐Jing Shao,
No information about this author
Siyu Yu
No information about this author
et al.
Diamond and Related Materials,
Journal Year:
2024,
Volume and Issue:
149, P. 111636 - 111636
Published: Oct. 9, 2024
Language: Английский
Hierarchical carbon nanofibers-based hybrid film on lightweight magnesium foil for ultrahigh energy density supercapacitors
Chemical Communications,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Jan. 1, 2024
Combinatorial
battery-like/capacitor
energy
storage
mechanisms
as
well
an
ultralight
current
collector
have
been
combined
to
achieve
high
performance
supercapacitors
with
superior
density
and
cyclic
life
span.
Language: Английский