Catalysis Science & Technology,
Год журнала:
2023,
Номер
13(16), С. 4873 - 4882
Опубликована: Янв. 1, 2023
Rational
fabrication
of
Ni-metal–organic-framework
(MOF)-derived
hollow
N-doped
carbon
encapsulated
Pd
nanocrystals
(Pd/Ni-MOF-HNC)
has
been
demonstrated
for
efficient
low-temperature
CO
oxidation,
due
to
their
outstanding
catalytic
and
physicochemical
merits.
Progress in Materials Science,
Год журнала:
2024,
Номер
142, С. 101242 - 101242
Опубликована: Янв. 21, 2024
Drawing
inspiration
from
the
natural
process
of
photosynthesis
found
in
plant
leaves,
scientists
are
exploring
use
photocatalysis
to
convert
carbon
dioxide
(CO2)
into
valuable
products
using
solar
light
and
water.
Photocatalytic
CO2
conversion
has
emerged
as
one
efficient
green
approaches
revitalize
environment
greenhouse
gas
pollution.
Owing
its
visible-range
band
gap,
non-toxicity,
ease
synthesis
at
economic
costs
stability
under
irradiation,
g-C3N4
most
explored
photocatalyst.
However,
due
rampant
exciton
recombination
owing
poor
electrical
conductivity,
efficiency
reduction
falls
short
for
pure/pristine
form.
Therefore,
structural
manoeuvre
materials
N-rich
configurations,
heteroatom/single-atom
doping
hybridization
with
various
functional
including
metal
oxides/sulfides,
perovskite
halides
complexes
been
adopted,
thereby
overcoming
their
inherent
drawbacks
photocatalytic
reduction.
In
this
timely
review,
we
present
an
overview
recent
advances
surface/interface
engineering
nitrides
fuels
useful
chemical
by-products.
More
importance
is
given
critical
evaluation
surface
manipulation
how
it
amplifies
affects
properties
Finally,
provide
a
comprehensive
outlook
future
directions
these
functionalised
applications.
We
strongly
believe
that
unique
review
will
offer
new
knowledge
on
property
relationship
nitride-based
impact
enhancing
performance
reactions
further
create
opportunities
them
areas.
Green Chemistry,
Год журнала:
2023,
Номер
25(15), С. 6032 - 6040
Опубликована: Янв. 1, 2023
MnFeM
(M
=
Cu,
Ti,
and
Co)
active
sites
doped
porous
g-C
3
N
4
nanofibers
were
developed
for
efficient
electrochemical
green
H
2
production.
MnFeCu/g-C
NFs
with
higher
synergism
showed
the
best
activity
compared
to
others
less
synergism.
The Journal of Physical Chemistry C,
Год журнала:
2024,
Номер
128(5), С. 1921 - 1935
Опубликована: Янв. 25, 2024
The
design
and
development
of
a
multiheterostructure
interface
signifies
promising
route
to
overcome
the
drawbacks
single-component
traditional
heterostructured
photocatalysts.
Herein,
one-dimensional
(1D)/two-dimensional
(2D)/2D
heterostructure,
α-MnO2@B/O-g-C3N4/d-Ti3C2,
is
constructed
by
facile
two-step
synthesis
method
ensure
charge
separation
utilized
for
photocatalytic
H2O2
production
H2
evolution.
formation
individual
materials
nanohybrids
as
well
1D/2D/2D
interfacial
interaction
ascertained
X-ray
diffraction,
Raman,
electron
microscopy
studies,
respectively.
5-MX/MBOCN
shows
optimum
(2846.4
μmol
h–1
g–1)
with
10%
ethanol
evolution
(897.2
h–1),
which
is,
respectively,
2.5
1.6
times
higher
than
that
binary
MBOCN
counterpart.
greater
cathodic
current
density
from
linear
sweep
voltammetry,
hindered
recombination
electrochemical
impedance
spectroscopy
photoluminescence
measurement,
better
photodurability
all
systematically
demonstrated
improved
performance.
mechanistic
investigation
in
ternary
hybrid,
electrons
flow
MnO2
boron-doped
g-C3N4
through
Z-scheme
dynamics
then
d-MXene
surface,
acts
cocatalyst.
transfer
corroborated
time-resolved
photoluminescence,
cyclic
voltametric
analysis,
trapping
experiment,
ESR
analysis.
This
work
instigates
high-efficiency
cocatalyst-integrated
photocatalyst
strong
high
redox
ability
solar
chemical
energy
conversion.