Nanomaterials,
Journal Year:
2024,
Volume and Issue:
14(21), P. 1724 - 1724
Published: Oct. 29, 2024
Two-dimensional
(2D)
semiconductor
components
have
excellent
physical
attributes,
such
as
mechanical
ductility,
high
mobility,
low
dielectric
constant,
and
tunable
bandgap,
which
attracted
much
attention
to
the
fields
of
flexible
devices,
optoelectronic
conversion,
microelectronic
devices.
Additionally,
one-dimensional
(1D)
materials
with
unique
surface
area
potency,
show
great
potential
in
many
applications.
However,
isolated
1D
2D
often
do
not
meet
demand
for
multifunctionality.
Therefore,
more
functionality
is
achieved
by
reconstructing
new
composite
structures
from
materials,
according
current
study,
it
has
been
demonstrated
that
hybrid
dimensional
integration
yields
a
significant
enhancement
performance
functionality,
widely
promising
field
constructing
novel
electronic
nanodevices.
In
this
review,
we
first
briefly
introduce
preparation
methods
1D/2D
heterostructures,
well
their
advantages
limitations.
The
applications
heterostructures
photodetectors,
gas
sensors,
pressure
strain
photoelectrical
synapses
biosensors
are
then
discussed,
along
opportunities
challenges
Finally,
outlook
emerging
heterojunction
given.
Langmuir,
Journal Year:
2024,
Volume and Issue:
unknown
Published: July 19, 2024
We
report
two-dimensional
(2D)
Ni/Co-based
metal
hydroxide-organic
framework
nanosheets
(Ni/Co-MHOF
NSs)
for
the
construction
of
an
efficient
electrochemical
nonenzymatic
glucose
sensor.
The
nanosheet
architecture
maximizes
exposure
coordinatively
unsaturated
sites,
which
enables
a
largely
improved
electrocatalytic
performance
toward
oxidation
reaction.
as-designed
sensor
exhibits
high
sensitivity
235.71
μA·mM–1·cm–2
and
wide
linear
range
1–3000
μM.
presents
excellent
selectivity
against
several
potential
interferences
short
response
time
3.0
s.
Of
interest,
high-performance
flexible
is
developed
by
depositing
Ni/Co-MHOF
NSs
on
screen-printed
electrodes,
reveal
decent
bending
stability.
designed
patch
can
attach
to
human
body
realize
noninvasive
monitoring
in
sweat.
This
work
may
shed
light
application
novel
MHOFs
field
wearable
sensing.
Advanced Materials,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Dec. 11, 2024
Biomolecule
isolation
is
a
crucial
process
in
diverse
biomedical
and
biochemical
applications,
including
diagnostics,
therapeutics,
research,
manufacturing.
Recently,
MXenes,
novel
class
of
two-dimensional
nanomaterials,
have
emerged
as
promising
adsorbents
for
this
purpose
due
to
their
unique
physicochemical
properties.
These
biocompatible
antibacterial
nanomaterials
feature
high
aspect
ratio,
excellent
conductivity,
versatile
surface
chemistry.
This
timely
review
explores
the
potential
MXenes
isolating
wide
range
biomolecules,
such
proteins,
nucleic
acids,
small
molecules,
while
highlighting
key
future
research
trends
innovative
applications
poised
transform
field.
provides
an
in-depth
discussion
various
synthesis
methods
functionalization
techniques
that
enhance
specificity
efficiency
biomolecule
isolation.
In
addition,
mechanisms
by
which
interact
with
biomolecules
are
elucidated,
offering
insights
into
selective
adsorption
customized
separation
capabilities.
also
addresses
recent
advancements,
identifies
existing
challenges,
examines
emerging
may
drive
next
wave
innovation
rapidly
evolving
area.
New Journal of Chemistry,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Jan. 1, 2024
Novel
Mn-Ce/HAp
nanocatalyst
was
fabricated
using
green
extract
of
Phyllanthus
emblica
and
utilized
it
for
the
photodegradation
methylene
blue
dye
reduction
4-NP
to
4-AP.