Communications Materials,
Journal Year:
2024,
Volume and Issue:
5(1)
Published: June 6, 2024
Abstract
Solar-driven
interfacial
water
evaporation
shows
great
potential
to
address
the
global
crisis,
but
its
efficient
implementation
in
presence
of
organic
wastewater
remains
challenging.
Here,
we
achieved
integrated
and
compound
degradation
by
designing
a
multifunctional
MoS
2
membrane.
Under
1.0
sun
irradiation,
membrane
exhibits
an
rate
2.07
kg
m
−2
h
−1
82%
efficiency
pollutants,
with
negligible
pollutant
residues
condensate.
The
high
performance
is
attributed
thermal
energy
generated
process
This
promotes
increase
constant
electron
transfer
during
photocatalytic
reaction,
accelerating
generation
free
radicals
facilitating
removal
pollutants.
study
demonstrated
that
fresh
can
be
collected
from
high-salinity
at
1.56
.
provides
sustainable
approach
addressing
crisis.
Advanced Functional Materials,
Journal Year:
2023,
Volume and Issue:
33(50)
Published: Aug. 9, 2023
Abstract
The
tunable
wettability
by
pH‐stimulus
has
great
potential
in
liquid
adhesion,
transport,
collection,
and
separation
due
to
its
rapid
response
wide
control
range.
However,
achieving
pH‐regulated
on
the
selected
region
of
material
without
acid–base
contamination
presents
a
distinct
challenge
for
existing
methods.
Here,
scalable
conductive
network
membrane
is
prepared
with
switchable
regulating
interfacial
pH.
generation
diffusion
pH
are
regulated
through
confinement
electrolysis
process,
which
adapted
both
spatial
arrangements
electrical
potential.
By
(>13),
can
change
from
superhydrophobicity
(Water
contact
angle
=
150°)
superhydrophilicity/underwater
superoleophobicity
0°)
additional
reagent
30
s
under
15
V.
Based
precise
controllability,
efficiently
realize
on‐demand
oil–water
(>99%)
situ
extraction‐back
extraction.
programable
free
contamination,
may
have
broad
practical
application
intelligent
fluid‐related
systems.
Journal of Environmental Management,
Journal Year:
2024,
Volume and Issue:
353, P. 120178 - 120178
Published: Feb. 1, 2024
The
treatment
of
oily
wastewater
has
become
a
serious
environmental
challenge,
for
which
graphene
oxide
emerged
as
promising
material
in
solving
the
problem.
ever-growing
utilization
(GO)
necessitates
constant
review.
This
review
article
employs
comprehensive
literature
survey
methodology,
systematically
examining
peer-reviewed
articles,
focusing
on,
but
not
entirely
limited
to,
last
five
years.
Major
databases
such
EBSCOhost,
Scopus,
ScienceDirect,
Web
Science
and
Google
Scholar
were
searched
using
specific
keywords
related
to
GO
treatment.
inclusion
criteria
focused
on
studies
that
specifically
address
application,
efficiency,
mechanisms
treating
wastewater.
data
extracted
from
these
sources
then
synthesized
highlight
most
important
developments,
challenges,
prospects
this
field.
As
far
is
concerned,
majority
revolve
around
use
mitigating
fouling
membrane
processes,
improving
stability,
capacity
reusability
sorbents,
enhancing
photodegradation
by
minimizing
charge
recombination.
Aggregate,
Journal Year:
2024,
Volume and Issue:
5(2)
Published: Jan. 4, 2024
Abstract
Pickering
multiphase
systems
stabilized
by
solid
particles
have
recently
attracted
increasing
attention
due
to
their
excellent
stability.
Among
various
stabilizers,
natural
and
renewable
cellulosic
micro/nanoparticles
that
are
derived
from
agricultural
forestry
sources
become
promising
candidates
for
stabilization
unique
morphological
features
tunable
surface
properties.
In
this
review,
recent
progress
on
forming
stabilizing
using
colloidal
is
summarized,
including
the
physicochemical
factors
affecting
assembly
at
interfaces
preparation
methods
suitable
producing
emulsions.
addition,
relevant
application
prospects
of
corresponding
materials
outlined.
Finally,
current
challenges
future
perspectives
such
presented.
This
review
aims
encourage
utilization
as
key
components
in
development
systems,
leading
enhanced
performance
functionalities.
Advanced Functional Materials,
Journal Year:
2024,
Volume and Issue:
34(33)
Published: March 1, 2024
Abstract
The
demand
for
lithium
resources
is
growing
rapidly
due
to
the
continuous
development
of
lithium‐ion
battery,
which
plays
an
important
part
in
renewable
energy
industry.
Global
sources
are
ores
and
brine,
59%
distributed
saline
brine.
However,
significant
brine
have
not
been
fully
utilized.
electrochemical
deintercalation
method
(EDM)
extraction
from
a
promising
technique
because
its
environmental
friendliness,
high
selectivity,
cost‐effectiveness.
Nevertheless,
application
EDM
greatly
limited
by
easy
dissolution
electrode
materials
like
LiMn
2
O
4
cost
mass
production.
Also,
there
few
existing
review
articles
on
extraction.
To
address
this
gap,
provides
comprehensive
overview
current
methods
systematically
summarizes
technical
status
EDM,
pays
special
attention
preparation
modification
materials.
This
gives
new
insight
into
mechanism
design
strategy
evaluation
EDM.