Nature Communications,
Год журнала:
2023,
Номер
14(1)
Опубликована: Апрель 21, 2023
Abstract
Carbon-supported
nanoparticles
are
indispensable
to
enabling
new
energy
technologies
such
as
metal-air
batteries
and
catalytic
water
splitting.
However,
achieving
ultrasmall
high-density
(optimal
catalysts)
faces
fundamental
challenges
of
their
strong
tendency
toward
coarsening
agglomeration.
Herein,
we
report
a
general
efficient
synthesis
uniformly
dispersed
on
two-dimensional
porous
carbon.
This
is
achieved
through
direct
carbothermal
shock
pyrolysis
metal-ligand
precursors
in
just
~100
ms,
the
fastest
among
reported
syntheses.
Our
results
show
that
situ
coordination
(e.g.,
N
→
Co
2+
)
local
ordering
during
millisecond-scale
play
crucial
role
kinetically
dominated
fabrication
stabilization
carbon
films.
The
as-obtained
samples
exhibit
excellent
activity
stability
bifunctional
catalysts
oxygen
redox
reactions.
Considering
huge
flexibility
coordinated
design,
diversified
single
multielement
(M
=
Fe,
Co,
Ni,
Cu,
Cr,
Mn,
Ag,
etc)
were
generally
fabricated,
even
systems
well
beyond
traditional
crystalline
chemistry.
method
allows
for
transient
well-dispersed
with
great
simplicity
versatility
various
application
schemes.
Chemical Reviews,
Год журнала:
2019,
Номер
120(2), С. 623 - 682
Опубликована: Дек. 23, 2019
The
use
of
well-defined
materials
in
heterogeneous
catalysis
will
open
up
numerous
new
opportunities
for
the
development
advanced
catalysts
to
address
global
challenges
energy
and
environment.
This
review
surveys
roles
nanoparticles
isolated
single
atom
sites
catalytic
reactions.
In
second
section,
effects
size,
shape,
metal-support
interactions
are
discussed
nanostructured
catalysts.
Case
studies
summarized
illustrate
dynamics
structure
evolution
under
certain
reaction
conditions.
third
we
syntheses
applications
atomic
anchored
on
different
types
supports.
final
part,
conclude
by
highlighting
catalyst
gaining
a
fundamental
understanding
their
active
sites.
Chemical Reviews,
Год журнала:
2020,
Номер
121(2), С. 649 - 735
Опубликована: Июль 15, 2020
The
successful
synthesis
of
noble-metal
nanocrystals
with
controlled
shapes
offers
many
opportunities
to
not
only
maneuver
their
physicochemical
properties
but
also
optimize
figures
merit
in
a
wide
variety
applications.
In
particular,
heterogeneous
catalysis
and
surface
science
have
benefited
enormously
from
the
availability
this
new
class
nanomaterials
as
atomic
structure
presented
on
nanocrystal
is
ultimately
determined
by
its
geometric
shape.
immediate
advantages
may
include
significant
enhancement
catalytic
activity
and/or
selectivity
substantial
reduction
materials
cost
while
providing
well-defined
model
system
for
mechanistic
study.
With
focus
monometallic
system,
review
article
provides
comprehensive
account
recent
progress
development
shapes,
addition
remarkable
performance
large
number
electrocatalytic
reactions.
We
hope
that
impetus
roadmap
next-generation
catalysts
vital
broad
range
industrial
Nature Communications,
Год журнала:
2019,
Номер
10(1)
Опубликована: Окт. 24, 2019
Noble
metal
nanomaterials
have
been
widely
used
as
catalysts.
Common
techniques
for
the
synthesis
of
noble
often
result
in
crystalline
nanostructures.
The
amorphous
nanostructures
remains
a
substantial
challenge.
We
present
general
route
preparing
dozens
different
nanosheets
with
thickness
less
than
10
nm
by
directly
annealing
mixture
acetylacetonate
and
alkali
salts.
Tuning
atom
arrangement
metals
enables
to
optimize
their
catalytic
properties.
Amorphous
Ir
exhibit
superior
performance
oxygen
evolution
reaction
under
acidic
media,
achieving
2.5-fold,
17.6-fold
improvement
mass
activity
(at
1.53
V
vs.
reversible
hydrogen
electrode)
over
commercial
IrO2
catalyst,
respectively.
In
situ
X-ray
absorption
fine
structure
spectra
indicate
valance
state
increased
+
4
during
process
recover
its
initial
after
reaction.
Nature Communications,
Год журнала:
2020,
Номер
11(1)
Опубликована: Апрель 24, 2020
Abstract
High-entropy
alloy
nanoparticles
(HEA-NPs)
are
important
class
of
materials
with
significant
technological
potential.
However,
the
strategies
for
synthesizing
uniformly
dispersed
HEA-NPs
on
granular
supports
such
as
carbon
materials,
γ-Al
2
O
3
,
and
zeolite,
which
is
vital
to
their
practical
applications,
largely
unexplored.
Herein,
we
present
a
fast
moving
bed
pyrolysis
strategy
immobilize
narrow
size
distribution
nm
up
denary
(MnCoNiCuRhPdSnIrPtAu)
at
923
K.
Fast
ensures
mixed
metal
precursors
rapidly
simultaneously
pyrolyzed
high
temperatures,
resulting
in
nuclei
small
size.
The
representative
quinary
(FeCoPdIrPt)
exhibit
stability
(150
h)
toward
hydrogen
evolution
reaction
mass
activity,
26
times
higher
than
commercial
Pt/C
an
overpotential
100
mV.
Our
provides
improved
methodology
various
supports.
Chemical Reviews,
Год журнала:
2023,
Номер
123(8), С. 4855 - 4933
Опубликована: Март 27, 2023
Heterogeneous
bimetallic
catalysts
have
broad
applications
in
industrial
processes,
but
achieving
a
fundamental
understanding
on
the
nature
of
active
sites
at
atomic
and
molecular
level
is
very
challenging
due
to
structural
complexity
catalysts.
Comparing
features
catalytic
performances
different
entities
will
favor
formation
unified
structure-reactivity
relationships
heterogeneous
thereby
facilitate
upgrading
current
In
this
review,
we
discuss
geometric
electronic
structures
three
representative
types
(bimetallic
binuclear
sites,
nanoclusters,
nanoparticles)
then
summarize
synthesis
methodologies
characterization
techniques
for
entities,
with
emphasis
recent
progress
made
past
decade.
The
supported
nanoparticles
series
important
reactions
are
discussed.
Finally,
future
research
directions
catalysis
based
and,
more
generally,
prospective
developments
both
practical
applications.
Advanced Materials,
Год журнала:
2019,
Номер
32(18)
Опубликована: Дек. 18, 2019
Microplasmas
are
low-temperature
plasmas
that
feature
microscale
dimensions
and
a
unique
high-energy-density
nonequilibrium
reactive
environment,
which
makes
them
promising
for
the
fabrication
of
advanced
nanomaterials
devices
diverse
applications.
Here,
recent
microplasma
applications
examined,
spanning
from
high-throughput,
printing-technology-compatible
synthesis
nanocrystalline
particles
common
materials
types,
to
water
purification
optoelectronic
devices.
combined
with
gaseous
and/or
liquid
media
at
low
temperatures
atmospheric
pressure
open
new
ways
form
functional
Specific
examples
include
gas-phase,
substrate-free,
plasma-liquid,
surface-supported
metallic,
semiconducting,
metal
oxide,
carbon-based
nanomaterials.
Representative
microplasmas
particular
importance
science
technology
light
sources
multipurpose,
efficient
VUV/UV
photochemical
processing
spectroscopic
analysis,
surface
disinfection,
purification,
active
electromagnetic
based
on
artificial
optical
materials,
other
systems
including
plasma
transistor.
The
current
limitations
future
opportunities
in
related
fields
highlighted.
ACS Energy Letters,
Год журнала:
2019,
Номер
4(5), С. 1206 - 1214
Опубликована: Апрель 17, 2019
Complex
solid
solution
(CSS)
nanoparticles
were
recently
discovered
as
efficient
electrocatalysts
for
a
variety
of
reactions.
As
one
many
advantages,
they
exhibit
the
potential
to
replace
noble-metal
catalysts
with
multinary
combinations
transition
metals
because
offer
formation
new
unique
and
tailorable
active
sites
multiple
elements
located
next
each
other.
This
Perspective
reports
on
current
state
challenges
(combinatorial)
synthesis
advanced
electron
microscopy
characterization
techniques
revealing
structure–activity
correlations
an
atomic
scale.
We
discuss
what
distinguishes
this
material
class
from
common
highlight
their
act
rationalize
nontypical
electrochemical
behavior.
provide
overview
about
in
synthesis,
characterization,
evaluation
propose
guidelines
future
design
CSS
achieve
further
progress
research
field,
which
is
still
its
infancy.
Advanced Functional Materials,
Год журнала:
2019,
Номер
29(50)
Опубликована: Окт. 9, 2019
Abstract
Nanoalloys
(NAs)
have
extraordinary
catalytic
properties,
but
metals
are
often
immiscible
giving
compositional
limits
on
design.
It
is
generally
believed
that
solution‐based
chemical
synthesis
inadequate
for
obtaining
NAs,
and
exotic
shock
or
severe
decomposition
reduction
reactions
required.
However,
such
methods
only
work
the
laboratory
scale
making
real‐world
applications
difficult.
Here,
a
general
solvothermal
method
reported
to
obtain
phase‐pure
bimetallic
high‐entropy
nano‐alloys
across
entire
composition
range.
Tuning
of
solvent
chemistry
precursors
leads
six
different
NAs:
Pd
x
Ru
1‐x
,
Pt
Ir
Rh
without
immiscibility
regions.
All
samples
face‐centered‐cubic
crystal
structures,
which
not
previously
been
observed
ruthenium‐based
systems.
Additionally,
quaternary
quinary
systems
produced,
demonstrating
ability
medium‐
NAs.
The
described
herein
provides
simple,
production
unknown
solid
solutions
throughout
their
range
potentially
allowing
detailed
tuning
nanocatalyst
properties.
Proceedings of the National Academy of Sciences,
Год журнала:
2020,
Номер
117(12), С. 6316 - 6322
Опубликована: Март 10, 2020
Multimetallic
nanoclusters
(MMNCs)
offer
unique
and
tailorable
surface
chemistries
that
hold
great
potential
for
numerous
catalytic
applications.
The
efficient
exploration
of
this
vast
chemical
space
necessitates
an
accelerated
discovery
pipeline
supersedes
traditional
"trial-and-error"
experimentation
while
guaranteeing
uniform
microstructures
despite
compositional
complexity.
Herein,
we
report
the
high-throughput
synthesis
extensive
series
ultrafine
homogeneous
alloy
MMNCs,
achieved
by
1)
a
flexible
design
formulation
in
precursor
solution
phase
2)
ultrafast
MMNCs
using
thermal
shock
heating
(i.e.,
∼1,650
K,
∼500
ms).
This
approach
is
remarkably
facile
easily
accessible
compared
to
conventional
vapor-phase
deposition,
particle
size
structural
uniformity
enable
comparative
studies
across
compositionally
different
MMNCs.
Rapid
electrochemical
screening
demonstrated
scanning
droplet
cell,
enabling
us
discover
two
promising
electrocatalysts,
which
subsequently
validated
rotating
disk
setup.
material
presents
paradigm
broad
range