New Journal of Chemistry,
Год журнала:
2024,
Номер
unknown
Опубликована: Янв. 1, 2024
BC/TCN-
x
composites
exhibit
excellent
photocatalytic
activity
and
structural
stability,
which
make
them
viable
materials
for
a
variety
of
environmental
energy-related
applications.
International Journal of Molecular Sciences,
Год журнала:
2024,
Номер
25(9), С. 4743 - 4743
Опубликована: Апрель 26, 2024
Due
to
a
large
number
of
harmful
chemicals
flowing
into
the
water
source
in
production
and
life,
quality
deteriorates,
use
value
is
reduced
or
lost.
Biochar
has
strong
physical
adsorption
effect,
but
it
can
only
separate
pollutants
from
cannot
eliminate
fundamentally.
Photocatalytic
degradation
technology
using
photocatalysts
uses
chemical
methods
degrade
mineralize
organic
pollutants,
difficult
recover
reuse.
Woody
biomass
advantages
huge
reserves,
convenient
access
low
price.
Processing
woody
biochar
then
combining
with
played
complementary
role.
In
this
paper,
shortcomings
photocatalyst
treatment
are
introduced,
respectively,
biochar-based
made
by
them
summarized.
The
preparation
assembly
starting
listed,
efficiency
different
listed.
Finally,
future
development
summarized
prospected.
Abstract
Exploring
and
developing
novel,
low‐cost,
environmentally
friendly
photovoltaic
materials
is
a
vital
trend
in
the
evolution
of
solar
cell
technology.
The
distinctive
properties
alkali
bismuth
ternary
sulfides
have
spurred
increased
research
application
optoelectronic
devices.
In
this
study,
novel
method
reported
for
preparing
NaBiS
2
film
by
sequential
thermal
evaporation
Na
S
Bi
3
layers
followed
heating
post‐treatment
first
time,
as
well
preparation
cells
with
light‐absorbing
layer.
Based
on
X‐ray
diffraction
Raman
analysis,
prepared
confirmed
to
be
single‐phase
material,
without
presence
any
secondary
phases.
Additionally,
photoelectric
characteristics
are
investigated
incorporated
material
into
By
optimizing
device
architecture,
utilizing
layer
achieved
conversion
efficiency
2.91%,
which
highest
up
now.
has
provided
valuable
perspective
path
development
field.