Dalton Transactions,
Journal Year:
2023,
Volume and Issue:
53(2), P. 591 - 600
Published: Nov. 29, 2023
The
photocatalytic
hydrogen
evolution
activity
of
SnS
2
/SnS-Cd
0.5
Zn
S
(SS-CZS)
is
significantly
enhanced
through
the
synergy
core–shell
structure
and
muti-heterojunctions.
AIChE Journal,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Feb. 13, 2025
Abstract
Photothermal
catalytic
dry
reforming
of
methane
(DRM)
provides
a
sustainable
carbon
conversion
route,
but
the
syngas
production
rates
remain
unsatisfactory
under
low‐temperature
conditions.
This
study
reported
layered
double
hydroxide‐derived
Ni–NiO
heterojunction
catalyst
with
optimized
electronic
environments
via
Ce
doping.
The
Ce‐doped
exhibited
excellent
photothermal
DRM
performance,
H
2
and
CO
93.90
114.25
mmol
g
−1
min
,
respectively,
superior
12‐h
stability.
Mechanistic
studies
revealed
that
activated
CH
4
to
form
x
*
O*
species,
while
doping
promoted
coupling
these
intermediates
3
O*,
enhancing
generation.
strategy
effectively
bonded
intermediate
species
generated
from
reactants,
thereby
into
syngas.
International Journal of Extreme Manufacturing,
Journal Year:
2024,
Volume and Issue:
6(3), P. 032007 - 032007
Published: March 12, 2024
Highlights
The
single
atom
catalysts
for
high
sensitive
and
selective
gas
sensor.
A
comprehensive
overview
of
preparation
strategies
catalysts.
interactions
between
the
target
gases
as
well
their
supports.
typical
applications
in
normal
volatile
organic
compounds.
Chemical Science,
Journal Year:
2024,
Volume and Issue:
15(17), P. 6285 - 6313
Published: Jan. 1, 2024
Single
atom
catalysts
(SACs)
show
exceptional
molecular
adsorption
and
electron
transfer
capabilities
owing
to
their
remarkable
atomic
efficiency
tunable
electronic
structure,
thereby
providing
promising
solutions
for
diverse
important
processes
including
photocatalysis,
electrocatalysis,
thermal
catalysis,
Nanoscale,
Journal Year:
2024,
Volume and Issue:
16(27), P. 12883 - 12908
Published: Jan. 1, 2024
The
development
of
room
temperature
gas
sensors
will
be
achieved
by
combining
nanomaterials
with
different
dimensions,
along
modifying
the
surface
properties
in
terms
both
chemical
composition
and
electrical
attributes
these
materials.