ABSTRACT
Fabrication
of
hierarchical
porous
structure
two-dimensional
layered
double
hydroxides
(LDHs)
materials
still
faces
high
challenges,
especially
the
precise
modulations
lamellar
metals
and
interlayer
anions.
Herein,
in
order
to
overcome
slow
kinetics
water
oxidation
reaction
which
requires
efficient
electrocatalysts
for
oxygen
evolution
(OER),
a
nanocomposite
assembled
by
foam
nickel
(NF)
supported
borate
anions
incorporated
bimetallic
NiCo
hydrotalcite
(NiCo-BLDH)
on
surface
phosphide
sheets
(NF/Ni2P@NiCo-BLDH)
is
prepared
as
an
electrocatalyst
through
NF
in-situ
phosphating
electrodeposition
approach.
Experimental
investigations
indicate
that
introducing
multi-phase
into
transition
metal
LDHs
can
regulate
their
properties,
enhance
adsorption
efficiency
OH-,
thereby
enhancing
OER
activity.
Remarkably,
NF/Ni2P@NiCo-BLDH
electrode
shows
low
overpotential
293
mV
at
100
mA
cm−2
Tafel
slope
108.3
dec−1
1.0
M
KOH
medium,
smaller
than
most
previously
reported
NiCo-based
catalysts.
However,
NF/Ni2P
exhibits
more
hydrogen
medium
compared
electrode.
This
work
may
push
forward
catalytic
activity
NiCo-LDH-based
provide
new
idea
large-scale
electrocatalytic
splitting.
Dalton Transactions,
Год журнала:
2024,
Номер
53(26), С. 10770 - 10804
Опубликована: Янв. 1, 2024
Prussian
blue
and
analogues
have
attracted
increasing
attention
as
versatile
framework
materials
with
a
wide
range
of
applications
in
catalysis,
energy
conversion
storage,
biomedical
environmental
fields.
Chemical Communications,
Год журнала:
2023,
Номер
59(86), С. 12915 - 12918
Опубликована: Янв. 1, 2023
Cobalt
(Co)
in
spent
lithium
ion
batteries
was
recycled
to
design
a
hollow
and
porous
CoN/HPCF/CoN
bifunctional
electrocatalyst.
It
reveals
superior
rechargeable
zinc-air
battery
performance
(peak
power
density
is
161.6
mW
cm-2)
with
excellent
stability.