Materials Chemistry Frontiers,
Год журнала:
2024,
Номер
8(18), С. 3037 - 3046
Опубликована: Янв. 1, 2024
A
2D
covalent
organic
framework
(COF),
supramolecule
cucurbit[8]uril,
and
an
AuNP-based
electrochemical
sensor
for
simultaneous
detection
of
5-fluorouracil
uracil,
in
concentrated
biofluids,
holding
promise
practical
sensing.
Dalton Transactions,
Год журнала:
2024,
Номер
53(30), С. 12410 - 12433
Опубликована: Янв. 1, 2024
Due
to
their
distinctive
security
characteristics,
all-solid-state
batteries
are
seen
as
a
potential
technology
for
the
upcoming
era
of
energy
storage.
The
flexibility
nanomaterials
shows
enormous
advancement
batteries'
exceptional
power
and
storage
capacities.
These
might
be
applied
in
many
areas
such
large-scale
grids,
well
creation
foldable
flexible
electronics,
portable
gadgets.
most
difficult
aspect
creating
comprehensive
nanoscale
battery
assembly
is
task
decreasing
particle
size
solid
electrolyte
while
maintaining
its
excellent
ionic
conductivity.
Materials
possessing
structural
features
substantial
electrochemically
active
surface
area
have
significantly
enhance
characteristics
cycle
life.
This
bring
about
changes
existing
models.
primary
objective
this
research
summarize
latest
advancements
utilizing
harvesting
various
assemblies.
study
examines
complex
solid-solid
interfaces
batteries,
feasible
methods
implementing
interfaces.
Currently,
there
significant
attention
on
necessity
develop
electrode-solid
that
exhibit
articulation
other
related
behavior
lithium
ions.
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.
Arabian Journal of Chemistry,
Год журнала:
2024,
Номер
17(5), С. 105746 - 105746
Опубликована: Март 20, 2024
Heavy
metals
in
water
bodies
pose
a
significant
threat
to
both
ecology
and
human
well-being.
Therefore,
the
development
of
green
sustainable
adsorbents
for
remediation
is
essential.
This
study
presents
crosslinked
chitosan
composite
structure
with
multiple
layers,
which
was
generated
by
adjusting
ratio
wheat
straw–derived
magnetic
biochar
composite.
The
adsorption
behavior
under
different
conditions
revealed
varying
Cr(VI)
concentration,
pH,
temperature.
exhibited
maximum
121.8
mg
g−1
water,
11.9
times
higher
than
that
biochar.
It
maintained
residual
performance
78.6
%
after
seven
cycles,
most
chitosan-based
composites.
reusability
improved
via
hydrochloric
acid
protonation
functional
groups
layer-by-layer
exposure
structure.
provides
new
insights
into
application
composites
derived
from
straw,
an
agricultural
waste,
as
adsorbents.