Abstract
Due
to
the
urgent
demand
for
nitrate
wastewater
treatment,
quest
an
efficient
and
environmentally
friendly
treatment
method
has
emerged
as
a
new
research
focus.
The
utilization
of
single‐atom
catalysts
(SACs)
in
electrocatalytic
reduction
reaction
(NO
3
RR)
ammonia
production
is
presently
recognized
effective
strategy
address
pollution
issues
obtain
high
value‐added
products.
In
this
review,
we
summarized
recent
advancements
NO
RR
based
on
SACs.
This
review
includes
comprehensive
analysis
identification
structural
determination
techniques
SACs,
well
mechanism
over
Furthermore,
investigates
impact
regulating
single
atom
structures
RR,
providing
valuable
insights
enhancing
efficiency.
It
explores
application
in‐situ
technology
real‐time
monitoring
control
RR.
Finally,
perspectives
challenges
regarding
SACs
are
presented.
Overall,
extensive
offers
researchers
industry
professionals
field
environmental
catalysis.
Chemical Society Reviews,
Год журнала:
2023,
Номер
52(15), С. 4878 - 4932
Опубликована: Янв. 1, 2023
Recently,
the
missing
link
between
homogeneous
and
heterogeneous
catalysis
has
been
found
it
was
named
single-atom
(SAC).
However,
SAC
field
still
faces
important
challenges,
one
of
which
is
controlling
bonding/coordination
single
atoms
support
in
order
to
compensate
for
increase
surface
energy
when
particle
size
reduced
due
atomic
dispersion.
Excellent
candidates
meet
this
requirement
are
carbon
nitride
(CN)-based
materials.
Metal
can
be
firmly
trapped
nitrogen-rich
coordination
sites
CN
materials,
makes
them
a
unique
class
hosts
preparing
catalysts
(SACs).
As
most
promising
two-dimensional
supports
stabilize
isolated
metal
atoms,
materials
have
increasingly
employed
SACs.
Herein,
we
will
cover
recent
advances
single-atoms
supported
by
In
review,
characterization
techniques
challenges
faced
topic
discussed,
commonly
synthetic
methods
delineated
different
Finally,
catalytic
performance
SACs
based
on
nitrides
reviewed
with
special
focus
their
photocatalytic
applications.
particular,
prove
as
non-innocent
support.
The
relationship
two-way,
where
change
electronic
properties
support,
while
features
matrix
tune
activity
reactions.
highlight
frontiers
field,
including
analytical
method
development,
truly
controlled
methods,
allowing
fine
control
loading
multi-element
synthesis,
how
understanding
two-way
exchange
behind
push
next
level.
Advanced Energy Materials,
Год журнала:
2024,
Номер
14(28)
Опубликована: Март 3, 2024
Abstract
Electrochemically
reducing
nitrate
(NO
3
−
),
a
common
water
pollutant,
to
valuable
ammonia
(NH
)
offers
green,
sustainable,
and
decentralized
route
for
synthesis.
Electrochemical
reduction
reaction
RR)
involves
two
crucial
steps:
deoxygenation
followed
by
nitrite
hydrogenation;
in
particular,
the
hydrogenation
is
rate‐determining
step
(RDS)
NO
RR.
In
this
work,
an
atomically
dispersed
cobalt‐phosphorus
(Co─P)
catalytic
pair
(CP)
with
strong
electronic
coupling
reported.
The
Co
site
Co─P
CP
effectively
activates
,
while
P
facilitates
dissociation
release
H
+
synergistically
enhancing
thermodynamic
kinetic
performance
of
electrochemical
ammonia.
Nature Communications,
Год журнала:
2024,
Номер
15(1)
Опубликована: Июль 9, 2024
Abstract
Developing
eco-friendly
catalysts
for
effective
water
purification
with
minimal
oxidant
use
is
imperative.
Herein,
we
present
a
metal-free
and
nitrogen/fluorine
dual-site
catalyst,
enhancing
the
selectivity
utilization
of
singlet
oxygen
(
1
O
2
)
decontamination.
Advanced
theoretical
simulations
reveal
that
synergistic
fluorine-nitrogen
interactions
modulate
electron
distribution
polarization,
creating
asymmetric
surface
configurations
electron-deficient
nitrogen
vacancies.
These
properties
trigger
selective
generation
from
peroxymonosulfate
(PMS)
improve
neighboring
reactive
species,
facilitated
by
contaminant
enrichment
at
fluorine-carbon
Lewis-acid
adsorption
sites.
Utilizing
these
insights,
synthesize
catalyst
through
montmorillonite
(MMT)-assisted
pyrolysis
(NFC/M).
This
method
leverages
role
MMT
as
an
in-situ
layer-stacked
template,
enabling
controlled
decomposition
carbon,
nitrogen,
fluorine
precursors
resulting
in
enhanced
structural
adaptability,
site
accessibility,
mass-transfer
capacity.
The
NFC/M
demonstrates
impressive
290.5-fold
increase
phenol
degradation
efficiency
than
single-site
analogs,
outperforming
most
metal-based
catalysts.
work
not
only
underscores
potential
precise
electronic
manipulations
design
but
also
advances
development
efficient
sustainable
solutions
purification.
Abstract
The
high
exciton
binding
energy
(
E
b
)
and
sluggish
surface
reaction
kinetics
have
severely
limited
the
photocatalytic
hydrogen
production
activity
of
carbon
nitride
(CN).
Herein,
a
hybrid
system
consisting
nitrogen
defects
Pt
single
atoms
is
constructed
through
facile
self‐assembly
photodeposition
strategy.
Due
to
acceleration
dissociation
regulation
local
electron
density
along
with
introduction
defects,
optimized
Pt‐MCT‐3
exhibits
rate
172.0
µmol
h
−1
λ
≥
420
nm),
≈41
times
higher
than
pristine
CN.
apparent
quantum
yield
for
determined
be
27.1%
at
nm.
experimental
characterizations
theoretical
calculations
demonstrate
that
act
as
traps
dissociation,
resulting
in
decrease
from
86.92
43.20
meV.
Simultaneously,
stronger
interaction
between
neighboring
directionally
drives
free
electrons
aggregate
around
atoms,
tailors
d
‐band
Pt,
forming
moderate
strength
H*
intermediates.
Angewandte Chemie International Edition,
Год журнала:
2024,
Номер
63(13)
Опубликована: Янв. 16, 2024
Abstract
Activation
of
ubiquitous
C(sp
3
)−H
bonds
is
extremely
attractive
but
remains
a
great
challenge.
Heterogeneous
photocatalysis
offers
promising
and
sustainable
approach
for
activation
has
been
fast
developing
in
the
past
decade.
This
Minireview
focuses
on
mechanism
strategies
heterogeneous
photocatalytic
activation.
After
introducing
mechanistic
insights,
including
precise
design
active
sites,
regulation
reactive
radical
species,
improving
charge
separation
reactor
innovations
are
discussed.
In
addition,
recent
advances
hydrocarbons,
alcohols,
ethers,
amines
amides
by
summarized.
Lastly,
challenges
opportunities
outlined
to
encourage
more
efforts
development
this
exciting
field.
Energy & Environmental Science,
Год журнала:
2023,
Номер
16(9), С. 3679 - 3710
Опубликована: Янв. 1, 2023
Nonmetallic
functional
species
beyond
the
first
coordination
shell
can
affect
or
even
dictate
electrocatalytic
performance
of
single-atom
catalysts
via
indirect,
long-range
interaction
with
metal
atoms.