Langmuir,
Journal Year:
2024,
Volume and Issue:
40(5), P. 2465 - 2486
Published: Jan. 24, 2024
Developing
sustainable
energy
solutions
to
safeguard
the
environment
is
a
critical
ongoing
demand.
Electrochemical
water
splitting
(EWS)
green
approach
create
effective
and
long-lasting
electrocatalysts
for
oxidation
process.
Metal
organic
frameworks
(MOFs)
have
become
commonly
utilized
materials
in
recent
years
because
of
their
distinguishing
pore
architectures,
metal
nodes
easy
accessibility,
large
specific
surface
areas,
shape,
adaptable
function.
This
review
outlines
most
significant
developments
current
work
on
developing
improved
MOFs
enhancing
EWS.
The
benefits
drawbacks
are
first
discussed
this
review.
Then,
some
cutting-edge
methods
successfully
modifying
also
highlighted.
Recent
progress
nickel
(Ni)
iron
(Fe)
based
been
critically
discussed.
Finally,
comprehensive
analysis
existing
challenges
prospects
Ni-
Fe-based
summarized.
Advanced Functional Materials,
Journal Year:
2023,
Volume and Issue:
33(42)
Published: June 20, 2023
Abstract
In
recent
years,
metal‐organic
frameworks,
especially
MOF‐based
derivatives,
have
been
regarded
as
one
of
the
best
candidate
electrode
materials
for
next
generation
advanced
materials,
due
to
high
porosity,
large
surface
area,
modifiable
functional
groups
well
controllable
chemical
composition.
This
review
presents
corresponding
synthesis
methods,
structural
design,
and
electrochemical
performance
MOF‐derived
including
metal
oxides,
sulfides,
phosphides,
carbon
in
high‐performance
lithium‐ion
batteries.
Subsequently,
problems
that
exist
current
application
derivatives
electrodes
batteries
are
discussed
along
with
possible
feasible
solutions.
At
last,
some
reasonable
pathways
strategies
design
MOF
also
suggested.
Advanced Functional Materials,
Journal Year:
2023,
Volume and Issue:
unknown
Published: Nov. 27, 2023
Abstract
The
advancements
in
high‐performance
flexible
energy
storage
devices
are
crucial
to
realize
the
integration
and
multifunctionality
of
wearable
devices.
Transition
metal
selenides
(TMSes),
possess
high
theoretical
capacity
electrical
conductivity,
which
hold
great
promise
for
applications.
This
review
provides
a
succinct
summary
progress
TMSes
as
electrode
materials
supercapacitor
First,
mechanism
effective
strategies
achieving
discussed.
Subsequently,
recent
process
TMSes‐based
supercapacitors
other
multifunctional
applications
is
summarized.
paper
aims
provide
superiority
their
advances
devices,
promote
development
fields
storage.
Journal of Materials Chemistry A,
Journal Year:
2024,
Volume and Issue:
12(19), P. 11149 - 11175
Published: Jan. 1, 2024
The
current
review
discusses
on
vanadium-
and
manganese-based
metal–organic
frameworks
their
derivatives
for
energy
storage
conversion
applications
along
with
the
potential
future
advancements
in
these
fields.
Advanced Functional Materials,
Journal Year:
2023,
Volume and Issue:
33(35)
Published: May 5, 2023
Abstract
Batteries
and
supercapacitors
continue
to
be
one
of
the
most
researched
topics
in
class
energy
storage
devices.
The
continuous
development
battery
supercapacitor
cell
components
has
shown
promising
throughout
years—from
slabs
pure
metal
porous
tailored
structures
metal‐based
active
materials.
In
this
direction,
metal–organic
frameworks
(MOFs)
serve
great
advantages
improving
properties
structure
derived
This
research
provides
a
novel
electrode
material,
Ni–Co–Se/C@CuO,
from
Ni–Co‐MOF
integrated
with
pre‐oxidized
Cu
mesh.
superior
electrochemical
performance
Ni–Co–Se/C@CuO
over
Ni–Co‐MOF@CuO
is
evident
through
its
higher
specific
capacity,
lower
resistivity,
richer
redox
activity,
more
favorable
diffusion‐dominated
mechanism.
When
assembled
as
hybrid
(HSC),
device
using
rGO
electrodes
exhibits
high
density
42
W
h
kg
−1
at
power
2
kW
,
maintains
capacity
retention
even
after
20
000
cycles.
improved
also
evaluated
first‐principle
investigations,
revealing
that
unique
preserved
heterostructure
portrays
enhanced
metallic
properties.
Such
evaluation
may
benefit
next‐generation
for
Small,
Journal Year:
2024,
Volume and Issue:
20(23)
Published: Jan. 4, 2024
Abstract
Pristine
iron
triad
metal–organic
frameworks
(MOFs),
i.e.,
Fe‐MOFs,
Co‐MOFs,
Ni‐MOFs,
and
heterometallic
MOFs,
are
utilized
as
versatile
promising
cathodes
for
alkali
metal‐ion
batteries,
owing
to
their
distinctive
structure
characteristics,
including
modifiable
designable
composition,
multi‐electron
redox‐active
sites,
exceptional
porosity,
stable
construction
facilitating
rapid
ion
diffusion.
Notably,
pristine
MOFs
have
recently
achieved
significant
milestones
in
electrochemical
energy
storage
due
properties.
Here,
the
recent
advances
batteries
summarized.
The
redox
reaction
mechanisms
essential
strategies
boost
behaviors
associated
devices
also
explored.
Furthermore,
insights
into
future
prospects
related
lithium‐ion,
sodium‐ion,
potassium‐ion
delivered.