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.
ChemSusChem,
Journal Year:
2024,
Volume and Issue:
17(15)
Published: March 12, 2024
MXenes,
a
two-dimensional
(2D)
material,
exhibit
excellent
optical,
electrical,
chemical,
mechanical,
and
electrochemical
properties.
Titanium-based
MXene
(Ti-MXene)
has
been
extensively
studied
serves
as
the
foundation
for
2D
MXenes.
However,
other
transition
metals
possess
potential
to
offer
properties
in
various
applications.
This
comprehensive
review
aims
provide
an
overview
of
properties,
challenges,
key
findings,
applications
less-explored
vanadium-based
MXenes
(V-MXenes)
their
composites.
The
current
trends
V-MXene
composites
energy
storage
conversion
have
thoroughly
summarized.
Overall,
this
offers
valuable
insights,
identifies
opportunities,
provides
suggestions
future
advancements
storage/conversion
Small,
Journal Year:
2023,
Volume and Issue:
20(17)
Published: Dec. 7, 2023
Abstract
Conductive
metal–organic
frameworks
(MOFs)
are
a
type
of
porous
material.
It
consists
metal
ions
coordinated
with
highly
conjugated
organic
ligands.
The
high
density
carriers
and
orbital
overlap
contribute
to
the
amazing
conductivity.
Additionally,
conductive
MOFs
inherit
advantages
large
specific
surface
area,
structural
diversity,
adjustable
pore
size
from
MOFs.
These
excellent
properties
have
attracted
many
researchers
explore
controllable
synthesis
electrochemical
applications
over
past
decade.
This
work
provides
an
overview
recent
advances
in
strategies
highlights
their
electrocatalysis,
supercapacitors,
sensors,
batteries.
Finally,
challenges
faced
by
application
discussed,
as
well
views
on
promising
solutions
for
them
presented.