Processes,
Journal Year:
2025,
Volume and Issue:
13(1), P. 235 - 235
Published: Jan. 15, 2025
A
uniform
distribution
of
Pd
nanoparticles
on
g-C3N5
layers
is
achieved
through
wet-chemical
reduction
(Pd/g-C3N5-EG).
Pd/g-C3N5-EG
demonstrates
superior
hydrogen
production
yield
compared
to
heterojunctions
synthesized
via
photoreduction
(Pd/g-C3N5-PR),
attributed
improved
metal–support
interaction.
an
average
evolution
rate
891.304
µmol
g−1
h−1,
representing
a
7.8-fold
increase
over
Pd/g-C3N5-PR
and
34.5-fold
bare
g-C3N5.
also
maintains
its
capability
after
five
recycling
cycles,
with
only
slight
decrease
in
efficiency.
Carbon Neutralization,
Journal Year:
2023,
Volume and Issue:
2(4), P. 425 - 457
Published: June 25, 2023
Abstract
The
bottlenecks
in
photocatalytic
materials
primarily
center
on
light
absorption
capacities
and
rapid
charge
recombination.
Thus,
many
gigantic
effects
have
been
undertaken
by
worldwide
scientists
to
address
the
issues.
In
this
concept,
carbon‐based
photocatalysts,
such
as
graphene
or
graphitic
carbon
nitrides
(g‐C
3
N
4
),
would
frequently
capture
scientific
fascination
due
their
distinct
properties
catalytic
applications.
However,
traditional
possess
drawbacks
mentioned
above.
current
era,
nitrogen‐rich
5
)
emerged
a
promising
star
for
applications
significant
enhancements
properties,
which
can
activate
ultraviolet,
visible,
even
under
near‐infrared
irradiations.
This
review
will
summarize
recent
progress
fabrication
of
g‐C
application
these
based
thoroughly
investigating
literature
studies.
updating
trend
state‐of‐the‐art
motivate
researchers
explore
field
further.