Catalysis Science & Technology,
Год журнала:
2024,
Номер
unknown
Опубликована: Дек. 10, 2024
This
study
reports
the
conversion
of
CO
2
and
H
to
O
at
low
temperature
pressure
(up
203
°C,
p
=
3.5
bar)
using
plasmonic
Au/CeO
2−
x
photocatalysts,
with
mildly
concentrated
sunlight
as
sole
energy
source
9
kW
m
−2
).
Advanced Functional Materials,
Год журнала:
2024,
Номер
unknown
Опубликована: Окт. 18, 2024
Abstract
The
efficient
separation
of
photocarriers
and
facile
generation
superoxide
radicals
are
crucial
for
enhancing
the
performance
photocatalysts
in
selectively
photo‐oxidizing
5‐hydroxymethylfurfural
(HMF)
into
2,5‐diformylfuran
(DFF).
Herein,
a
ZnIn
2
S
4
/CeO
composite
with
S‐scheme
heterojunction
sulfur
vacancies
(S
V
)
is
successfully
developed
through
one‐step
hydrothermal
method.
optimal
catalyst
‐ZnIn
exhibits
excellent
catalytic
activity
100%
conversion
HMF
96.1%
selectivity
DFF
80
min
under
ambient
conditions,
production
rate
up
to
952.6
µmol
g
−1
h
.
Intriguingly,
remains
significant
even
when
concentration
increased
from
8
100
mм.
Experimental
theoretical
investigations
discover
that
synergistic
effect
contribute
activation
oxygen,
which
facilitate
radicals,
thus
boosting
oxidation
reactions.
Applied Sciences,
Год журнала:
2024,
Номер
14(18), С. 8285 - 8285
Опубликована: Сен. 14, 2024
Cu
interconnect
chemical
mechanical
polishing
(CMP)
technology
has
been
continuously
evolving,
leading
to
increasingly
stringent
post-CMP
cleaning
requirements.
To
address
the
environmental
pollution
caused
by
traditional
solutions,
we
have
explored
use
of
photocatalytic
processes
remove
citric
acid,
which
is
a
commonly
used
complexing
agent
for
CMP.
In
this
study,
CeO2
abrasives,
characterized
hardness
5.5,
are
extensively
employed
in
Importantly,
also
exhibits
suitable
band
structure
with
gap
2.27
eV,
enabling
it
photocatalytically
Additionally,
integration
H2O2,
an
essential
oxidant
CMP,
enhances
degradation
efficiency.
The
research
indicates
that
removal
rate
single-phase
was
1.78
mmol/g/h
and
efficiency
increased
40%
addition
attributed
hydroxyl
radicals
generated
from
Fenton-like
reaction
between
H2O2
CeO2.
These
findings
highlight
potential
improve
organic
contaminant
cleaning,
offering
more
sustainable
alternative
conventional
practices.
ACS Catalysis,
Год журнала:
2024,
Номер
14(22), С. 16673 - 16686
Опубликована: Окт. 29, 2024
Methane
is
both
a
greenhouse
gas
and
an
abundant
C1
fuel
resource
that
exists
in
nature.
The
selective
photocatalytic
upgrading
of
methane
into
multicarbon
(C2+)
chemicals
can
mitigate
the
effect
promote
utilization
value
methane,
which
C–C
coupling
step
key
to
production
products.
Achieving
this
targeted
under
ambient
temperature
pressure
conditions
requires
efficient
activation
C–H
bonds
as
well
balancing
adsorption
desorption
various
free
radicals
intermediates
facilitate
coupling.
In
Review,
we
delve
recent
advances
C2+
importance
catalyst
design,
including
active
site
assembly,
crystal
surface,
valence
reconstruction,
first
emphasized.
Then,
discuss
how
coreactants
such
carbon
dioxide
monoxide
be
introduced
enhance
chain
growth
pathways.
Furthermore,
also
summarize
developments
looping
systems
photoelectrocatalysis.
Finally,
conclude
with
outlook
for
future
advancement
field.
This
Review
aims
provide
general
framework
investigating
reactions
toward
products,
thereby
suggesting
research
directions
environmentally
friendly
strategies.