Green Chemistry,
Год журнала:
2022,
Номер
24(15), С. 5952 - 5964
Опубликована: Янв. 1, 2022
ILG-microspheres
as
liquid
compartments
can
rapidly
extract
substances,
and
ILs
inside
them
accelerate
the
charge
transfer
in
BiOBr@ILG-microspheres,
thus
providing
an
efficient
catalytic
microenvironment
for
photodegradation
reactions.
Semiconductor-based
materials
utilized
in
photocatalysts
and
electrocatalysts
present
a
sophisticated
solution
for
efficient
solar
energy
utilization
bias
control,
field
extensively
explored
its
potential
sustainable
environmental
management.
Recently,
3D
printing
has
emerged
as
transformative
technology,
offering
rapid,
cost-efficient,
highly
customizable
approaches
to
designing
with
precise
structural
control
tailored
substrates.
The
adaptability
precision
of
facilitate
seamless
integration,
loading,
blending
diverse
photo(electro)catalytic
during
the
process,
significantly
reducing
material
loss
compared
traditional
methods.
Despite
evident
advantages
printing,
comprehensive
compendium
delineating
application
realm
photocatalysis
electrocatalysis
is
conspicuously
absent.
This
paper
initiates
by
delving
into
fundamental
principles
mechanisms
underpinning
printing.
Subsequently,
an
exhaustive
overview
latest
techniques,
underscoring
their
pivotal
role
shaping
landscape
applications.
Furthermore,
examines
various
methodologies
seamlessly
incorporating
catalysts
printed
substrates,
elucidating
consequential
effects
catalyst
deposition
on
catalytic
properties.
Finally,
thoroughly
discusses
challenges
that
necessitate
focused
attention
resolution
future
advancements
this
domain.
Abstract
Pickering
emulsions,
which
are
emulsions
stabilized
by
solid
particles
adsorbed
at
the
interface
between
two
immiscible
liquids,
provide
a
highly
versatile
platform
for
catalytic
processes
and
offer
distinct
advantages
over
conventional
systems.
These
combine
benefits
of
traditional
biphasic
catalysis
with
enhanced
contact
reactive
species
due
to
their
large
interfacial
area,
contribute
high
efficiency.
Furthermore,
significant
in
processes,
including
improved
extraction
efficiency,
wider
range
operational
variables,
possibility
continuous
operation,
ease
recovery
emulsifier
and/or
catalyst.
Moreover,
through
strategic
selection
design
particles,
researchers
can
tailor
properties
optimize
performance,
selectivity
stability.
This
comprehensive
review
discusses
recent
breakthroughs
emulsion
research
applications
catalysis,
examining
how
have
transformed
methodologies.
By
discussing
latest
developments,
this
demonstrates
potential
as
catalyst
highlights
role
advancing
sustainable
efficient
processes.
Foods,
Год журнала:
2022,
Номер
11(18), С. 2883 - 2883
Опубликована: Сен. 17, 2022
The
detailed
investigation
of
food-grade
emulsions,
which
possess
considerable
structural
and
functional
advantages,
remains
ongoing
to
enhance
our
understanding
these
dispersion
systems
expand
their
application
scope.
This
work
reviews
the
applications
emulsions
on
dispersed
phase,
interface
structure,
macroscopic
scales;
further,
it
discusses
corresponding
factors
influence,
selection
design
food
systems,
expansion
Specifically,
dispersed-phase
scale
mainly
include
delivery
by
soft
matter
carriers
auxiliary
extraction/separation,
while
structure
involve
biphasic
for
enzymatic
catalysis
that
can
influence
substance
digestion/absorption,
washing,
disinfection.
Future
research
scales
should
therefore
focus
surface-active
substances,
real
compositions,
layers
with
antioxidant
properties.
By
contrast,
materials
structured
food,
in
addition
various
material
other
emerging
uses.
In
this
case,
future
interactions
between
emulsion
ingredients,
effects
process
engineering,
safety,
nutrition,
metabolism.
Considering
field,
we
believe
review
will
be
useful
researchers
aiming
explore
emulsions.