E3S Web of Conferences,
Journal Year:
2023,
Volume and Issue:
430, P. 01199 - 01199
Published: Jan. 1, 2023
This
study
explores
the
domain
of
developing
material
categories
for
purpose
sustainable
energy
storage,
with
objective
addressing
constraints
inherent
in
existing
technologies
and
facilitating
development
inventive
resolutions.
The
research
examines
potential
nanomaterials,
metal-organic
frameworks
(MOFs),
polymers,
two-dimensional
(2D)
materials
as
a
means
to
overcome
obstacles
presented
by
current
storage
systems.
investigates
qualities
various
materials,
examining
them
conjunction
range
thorough
characterization
techniques.
These
approaches
include
electrochemical
analysis,
structural
methodologies,
nanoscale
observations,
computer
modelling.
In
next
this
will
examine
future
direction
on
including
prospective
advancements
critical
related
scalability,
cost-efficiency,
integration
within
general,
investigation
highlights
significant
impact
new
more
environmentally
friendly
infrastructure.
present
focuses
emerging
storage.
Specifically,
frameworks,
context.
By
properties
characteristics
these
aims
contribute
understanding
efficient
solutions.
RSC Advances,
Journal Year:
2025,
Volume and Issue:
15(9), P. 6593 - 6633
Published: Jan. 1, 2025
(a)
Anodic
B@LGTs
and
(b)
cathodic
BBR
electronic
flow
through
thinly
adhered
water
dipoles
with
robust
FRET
for
PCR
supported
(c)
zero
UV
absorbance,
(d)
recycling
wastewater
via
photocatalysis
(e)
extended
morphology
from
LSNRs
to
B@LGTs.
Journal of materials research/Pratt's guide to venture capital sources,
Journal Year:
2024,
Volume and Issue:
39(12), P. 1741 - 1757
Published: April 30, 2024
Abstract
Fabrications
of
nanomotors
(NMs)
are
at
the
forefront
exploring
true
potential
nanotechnology.
Tubular
(TNMs)
have
been
attracting
huge
interest
recently.
NMs
based
on
2D-hexagonal
mesoporous
silica
(SBA-15)
prepared
through
surfactant-assisted
sol–gel
method.
Copper
and/or
iron
oxide
nanoparticles
impregnated
in
SBA-15
to
form
catalytic
tubular
nanomotors.
Characterization
has
investigated
by
XPS,
XRD,
HR-TEM,
SEM–EDS,
and
BET.
The
electrochemical
measurements
were
used
confirm
motion
By
increasing
loading
metal
nanoparticles,
decreases;
this
could
be
observed
from
current
loss.
anti-cancer
synthesized
against
two
cell
lines
(A549
H460)
human
lung
carcinoma
tested.
Among
all
tested
NMs,
high-metal
oxide-loaded
materials
containing
CuO
only
as
well
Fe
2
O
3
potent
significant
apoptotic
death
for
cancer
treatment.
Graphical
abstract
Physica Scripta,
Journal Year:
2024,
Volume and Issue:
99(8), P. 082001 - 082001
Published: July 11, 2024
Abstract
Scientific
and
technical
communities
often
debate
photodetection
as
a
significant
technology
due
to
its
unquestionable
extensive
usage
in
business
research.
Traditional
bulk
semiconductors
like
GaN,
Si,
InGaAs
are
being
used
less
for
industry
because
they
aren’t
mechanically
stable
or
flexible
enough,
have
expensive
substrates,
charge
carriers
can’t
move
around
freely
enough.
Nonetheless,
2D
materials
such
transition-metal
nitrides,
chalcogenides,
carbides,
addition
graphene,
leading
the
path
toward
achieving
more
sophisticated
results
surpassing
limitations
imposed
by
traditional
semiconductors.
This
is
their
exceptional
electronic
mechanical
properties,
which
include
flexibility,
adjustable
bandgaps,
high
mobilities,
ample
potential
constructing
heterojunctions
of
chalcogenides-based
thin
films.
Given
recent
surge
research,
field
has
expanded
significantly
requires
systematic
compilation
pertinent
scientific
knowledge.
A
comprehensive
study
must
address
many
aspects
film
manufacturing
strategies,
assembly
procedures,
device
integration,
spectral
heterojunction
potential,
future
research
prospects.
paper
specifically
examines
use
photodetection.
These
areas
solar-blind,
visible,
near-infrared,
broadband
detectors.
We
our
discussion
photodetector
performance
parameters
how
latest
films
formed
combining
ordinary
resulted
high-performance
UV,
IR
range
be
photodetectors.
Ultimately,
we
provide
comparative
demonstration
characteristics
photodetectors,
offering
distinct
assessment
suitability
these
advancement
next-generation