Energy & Environmental Science,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
This
review
provides
a
comprehensive
analysis
of
design
strategies
and
future
challenges
related
to
long-term
stability
(electrode,
cell,
system)
in
direct
seawater
electrolysis
(DSE).
Chemical Science,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
Electrocatalysis
provides
a
desirable
approach
for
moving
toward
sustainable
energy
future.
Herein,
rapid
and
facile
potential
pulse
method
was
implemented
one-pot
electrosynthesis
of
the
amorphous
Ni-Co-Fe-P
(NCFP)
electrocatalyst.
The
2
mg
cm-2
loaded
electrode
displayed
excellent
trifunctional
electrocatalytic
activities
hydrogen
evolution
reaction
(η
HER
j=10
=
102
mV),
oxygen
OER
250
reduction
(E
ORR
1/2
0.73
V)
in
alkaline
solutions.
Interestingly,
even
lower
overpotential
η
86
mV
obtained
at
super-high
mass
loading
18.7
cm-2,
demonstrating
its
feasibility
industrial-level
applications.
NCFP
electrocatalyst
also
offered
superior
catalytic
activity
seawater
electrolysis
industrially
required
current
rates
(500
mA
cm-2).
When
as
an
air
cathode
catalyst
aqueous
quasi-solid
state
zinc-air
battery,
both
devices
delivered
performance.
This
study
insights
into
transformative
technology
towards
Energy & Environmental Science,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 1, 2025
This
review
provides
a
comprehensive
analysis
of
design
strategies
and
future
challenges
related
to
long-term
stability
(electrode,
cell,
system)
in
direct
seawater
electrolysis
(DSE).