ZIF-67 templated synthesis of sea urchin-like P-Co3S4@CdS nanocomposite for enhanced H2 production and dye oxidation under solar light: Role of P-doping on cocatalyst property of Co3S4
Police Anil Kumar Reddy,
No information about this author
Chaeeun Lee,
No information about this author
Sungjun Bae
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et al.
Composites Part B Engineering,
Journal Year:
2025,
Volume and Issue:
unknown, P. 112178 - 112178
Published: Jan. 1, 2025
Language: Английский
Harnessing Z-scheme charge transfer in SnS/ZnWO4 hybrid for efficient methylene blue photodegradation
Zulfiqar Ali,
No information about this author
Iqra Fareed,
No information about this author
Ala’eddin A. Saif
No information about this author
et al.
Materials Science in Semiconductor Processing,
Journal Year:
2025,
Volume and Issue:
190, P. 109338 - 109338
Published: Jan. 31, 2025
Language: Английский
Advanced TiO2-Based Photocatalytic Systems for Water Splitting: Comprehensive Review from Fundamentals to Manufacturing
Molecules,
Journal Year:
2025,
Volume and Issue:
30(5), P. 1127 - 1127
Published: Feb. 28, 2025
The
global
imperative
for
clean
energy
solutions
has
positioned
photocatalytic
water
splitting
as
a
promising
pathway
sustainable
hydrogen
production.
This
review
comprehensively
analyzes
recent
advances
in
TiO2-based
systems,
focusing
on
materials
engineering,
source
effects,
and
scale-up
strategies.
We
recognize
the
advancements
nanoscale
architectural
design,
engineered
heterojunction
of
catalysts,
cocatalyst
integration,
which
have
significantly
enhanced
efficiency.
Particular
emphasis
is
placed
crucial
role
chemistry
system
performance,
analyzing
how
different
sources-from
wastewater
to
seawater-impact
evolution
rates
stability.
Additionally,
addresses
key
challenges
scaling
up
these
including
optimization
reactor
light
distribution,
mass
transfer.
Recent
developments
artificial
intelligence-driven
discovery
process
are
discussed,
along
with
emerging
opportunities
bio-hybrid
systems
CO2
reduction
coupling.
Through
critical
analysis,
we
identify
fundamental
propose
strategic
research
directions
advancing
technology
toward
practical
implementation.
work
will
provide
comprehensive
framework
exploring
advanced
composite
developing
efficient
scalable
multifunctional
simultaneous
Language: Английский
Preparation of Magnetic Photocatalyst Fe3O4@SiO2@Fe-TiO2 and Photocatalytic Degradation Performance of Methyl Orange in Na2SO4 Solution
Applied Sciences,
Journal Year:
2025,
Volume and Issue:
15(7), P. 3781 - 3781
Published: March 30, 2025
In
this
study,
Fe3O4@SiO2@TiO2
(FS-FT
(0
g))
photocatalysts,
featuring
a
magnetic
core–shell
structure,
and
Fe-doped
Fe3O4@SiO2@Fe-TiO2
(x
were
fabricated
via
the
sol–gel
method.
Structural
compositional
analyses
of
processed
samples
systematically
conducted
through
X-ray
diffraction
(XRD),
transmission
electron
microscopy
(TEM)
with
selected
area
(SAED),
surface-sensitive
photoelectron
spectroscopy
(XPS),
optical
property
assessment
UV-Vis
diffuse
reflectance
(UV-DRS).
The
results
show
that
TiO2
on
outer
layer
FS-FT
g)
has
an
anatase
Fe
is
doped
into
g).
photodegradation
methyl
orange
(MO)
using
various
doping
levels
was
evaluated
in
both
pure
MO
(C0
=
10
mg/L)
MO-Na2SO4-blended
solutions.
Under
irradiation
high-pressure
mercury
lamps,
removal
rates
(0.36
solution
reached
90.25%
99%
at
25
min,
respectively,
which
indicates
can
enhance
photocatalytic
performance.
mg/L,
CNa2SO4
12.5
g/L)
92.38%
97.16%
respectively.
rate
decreased
previous
Na2SO4
inhibit
degradation
experiments
solutions
different
concentrations
showed
as
concentration
increases,
inhibitory
effect
becomes
more
pronounced.
Recovery
recycling
confirmed
photocatalyst
exhibited
robust
performance
over
multiple
cycles.
Kinetic
analysis
data,
based
first-order
model,
to
explore
underlying
principles.
Language: Английский
Engineering a Novel BiVO4-CuFe2O4@MXene Heterojunction with Boosted Photocatalytic Activity: Visible-Light-Driven Enrofloxacin Degradation from Polluted Water and H2 Production
Jun Zhao,
No information about this author
Mohammed Al‐asadi,
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Ali B.M. Ali
No information about this author
et al.
Journal of Alloys and Compounds,
Journal Year:
2025,
Volume and Issue:
unknown, P. 180648 - 180648
Published: April 1, 2025
Language: Английский
Photo-deposition of AgO thin films on TiO2 substrate for (P-N) hetero-junction applications: Considering the degree of contamination
Journal of Alloys and Compounds,
Journal Year:
2024,
Volume and Issue:
unknown, P. 177331 - 177331
Published: Oct. 1, 2024
Language: Английский
Hybrid magnetic nanocomposite NiFe2O4/TiO2 for Photocatalytic dye degradation and green hydrogen (H2) generation
Pratik S. Patil,
No information about this author
Yogesh P. Ubale,
No information about this author
Sudarshan S. Gawali
No information about this author
et al.
Ceramics International,
Journal Year:
2024,
Volume and Issue:
unknown
Published: Oct. 1, 2024
Language: Английский
Dual-functional Cu-Fe Co-Doped TiO₂ photocatalyst for efficient hydrogen production and phenol degradation
Doo Ok Jang,
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Younghwon Kim,
No information about this author
Jaehun Lee
No information about this author
et al.
Surfaces and Interfaces,
Journal Year:
2024,
Volume and Issue:
55, P. 105394 - 105394
Published: Nov. 8, 2024
Language: Английский
POM-Mediated Synthesis of Ag/PW12/g-C3N4 Nanocomposite Exhibiting Enhanced Photocatalytic Performance Under Visible Light
Huimin Liu,
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Qiuci Yu,
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Wei Chen
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et al.
Catalysts,
Journal Year:
2024,
Volume and Issue:
14(12), P. 912 - 912
Published: Dec. 11, 2024
The
photoreduction
method
was
utilized
to
synthesize
the
Ag/PW12/g-C3N4
nanocomposite.
polyanion
PW12O403−
served
as
photoreductant,
and
a
stabilizer
protectant
for
Ag
nanoparticles.
TEM
images
reveals
that
nanoparticles
with
size
of
approximately
5
nm
were
modified
on
surface
g-C3N4.
Photocatalytic
experiments
confirm
Ag/PW12/g-C3N4,
mass
ratio
Ag3PW12O40
g-C3N4
nanosheets
at
30%,
exhibits
high
efficiency
durability
in
photodegradation
Rhodamine
B.
Research
photocatalytic
mechanism
indicates
decorating
is
beneficial
improving
separation
electron–hole
pairs
enhancing
capability
visible
light
absorption.
Language: Английский