Journal of Materials Chemistry A,
Год журнала:
2024,
Номер
12(11), С. 6712 - 6723
Опубликована: Янв. 1, 2024
Hydrogen-bonded
organic
frameworks
(HOFs)
are
a
new
type
of
porous
material
and
have
great
potential
as
electrode
precursors
because
their
high
porosity.
Abstract
Electrochemical
energy
systems
mark
a
pivotal
advancement
in
the
sector,
delivering
substantial
improvements
over
conventional
systems.
Yet,
major
challenge
remains
deficiency
storage
technology
to
effectively
retain
produced.
Amongst
these
are
batteries
and
supercapacitors,
renowned
for
their
versatility
efficiency,
which
depend
heavily
on
quality
of
electrode
materials.
Metal
oxide
composites,
particular,
have
emerged
as
highly
promising
due
synergistic
effects
that
significantly
enhance
functionality
efficiency
beyond
individual
components.
This
review
explores
application
metal
composites
electrodes
SCs,
focusing
various
material
perspectives
synthesis
methodologies,
including
exfoliation
hydrothermal/solvothermal
processes.
It
also
examines
how
methods
influence
device
performance.
Furthermore,
confronts
challenges
charts
future
directions
composite-based
systems,
critically
evaluating
aspects
such
scalability
synthesis,
cost-effectiveness,
environmental
sustainability,
integration
with
advanced
nanomaterials
electrolytes.
These
factors
crucial
advancing
next-generation
technologies,
striving
performance
while
upholding
sustainability
economic
viability.
Despite
significant
advancements
in
medical
technology,
cancer
remains
the
world's
second‐leading
cause
of
death,
largely
attributed
to
late‐stage
diagnoses.
While
traditional
detection
methodologies
offer
foundational
insights,
they
often
lack
specificity,
affordability,
and
sensitivity
for
early‐stage
identification.
In
this
context,
development
biosensors
offers
a
distinct
possibility
precise
rapid
identification
biomarkers.
Carbon
nanomaterials,
including
graphene,
carbon
nitride,
quantum
dots,
other
carbon‐based
nanostructures,
are
highly
promising
detection.
Their
simplicity,
high
sensitivity,
cost‐effectiveness
contribute
their
potential
field.
This
review
aims
elucidate
emerging
carbon‐nanomaterial‐based
early
diagnosis.
The
relevance
various
biosensor
mechanisms
performance
physicochemical
properties
nanomaterials
is
discussed
depth,
focusing
on
demonstrating
broad
creating
biosensors.
Diverse
techniques,
such
as
electrochemical,
fluorescence,
surface
plasmon
resonance,
electrochemiluminescence,
quartz
crystal
microbalance,
emphasized
At
last,
summary
existing
challenges
future
outlook
field
elaborated.
New Journal of Chemistry,
Год журнала:
2024,
Номер
48(19), С. 8933 - 8962
Опубликована: Янв. 1, 2024
Nanostructured
materials
are
widely
researched
for
energy
applications
like
solar
cells,
catalysts,
batteries,
and
graphene-based
due
to
their
high
surface
area,
favorable
transport
properties,
tunable
physical
attributes,
confinement
effects
at
the
nanoscale.
Progress in Materials Science,
Год журнала:
2024,
Номер
146, С. 101331 - 101331
Опубликована: Июнь 25, 2024
Borophene
stands
out
uniquely
among
Xenes
with
its
metallic
character,
Dirac
nature,
exceptional
electron
mobility,
thermal
conductivity,
and
Young's
moduli—surpassing
graphene.
Invented
in
2015,
various
methods,
including
atomic
layer
deposition,
molecular
beam
epitaxy,
chemical
vapor
have
successfully
been
demonstrated
to
realize
substrate-supported
crystal
growth.
Top-down
approaches
like
micromechanical,
sonochemical,
solvothermal
modified
hummer's
techniques
also
employed.
Thanks
high
electronic
borophene
serves
as
an
active
material
for
ultrafast
sensing
of
light,
gases,
molecules,
strain.
Its
behaviour,
electrochemical
activity,
anti-corrosive
nature
make
it
ideal
applications
energy
storage
catalysis.
It
has
proven
effective
electrocatalyst
HER,
OER,
water
splitting,
CO2
reduction,
NH3
reduction
reactions.
Beyond
this,
found
utility
bioimaging,
biosensing,
biomedical
applications.
A
special
emphasis
will
be
given
on
the
nanoarchitectonics
i.e.
doped
borophene-based
hybrids
other
2D
materials
nanoparticles
theoretical
understanding
these
emerging
systems
gain
more
insights
their
structure
properties,
aiming
manipulate
tailored