Advanced Materials,
Journal Year:
2021,
Volume and Issue:
33(36)
Published: July 26, 2021
Abstract
Solar‐driven
interfacial
steam
generation
(SISG)
has
been
recognized
as
a
promising
strategy
to
solve
water
shortages
in
an
eco‐friendly
and
low‐cost
way.
However,
the
practical
application
of
SISG
is
vitally
restricted
by
some
inherent
limits,
especially
for
finite
evaporation
rate
insufficient
working
life
evaporator.
Herein,
novel
system
involving
all‐fiber
porous
cylinder‐like
foam
3D
evaporator,
side
area‐assisted
protocol,
aggregation‐induced‐emission‐active
solar
absorber
with
“one
stone
two
birds”
function
explored.
The
exhibits
efficient
photothermal
conversion,
endowing
evaporator
high
3.6
kg
m
−2
h
−1
rate,
which
highly
desirable
under
1
sun
irradiation.
Moreover,
capable
powerfully
producing
reactive
oxygen
species
upon
sunlight
irradiation,
results
extraordinary
photodynamic
killing
bacteria
nearby
fiber
prevent
biofouling,
consequently
improving
Journal of Materials Chemistry A,
Journal Year:
2021,
Volume and Issue:
9(33), P. 17569 - 17591
Published: Jan. 1, 2021
The
photothermal
applications
of
2D
nanomaterials
in
therapy,
water
evaporation,
thermochemical
reactions,
light-driven
actuators,
electrodes,
energy
storage,
wearable
heaters
and
bacterial
inhibition.
Advanced Materials,
Journal Year:
2021,
Volume and Issue:
33(36)
Published: July 26, 2021
Abstract
Solar‐driven
interfacial
steam
generation
(SISG)
has
been
recognized
as
a
promising
strategy
to
solve
water
shortages
in
an
eco‐friendly
and
low‐cost
way.
However,
the
practical
application
of
SISG
is
vitally
restricted
by
some
inherent
limits,
especially
for
finite
evaporation
rate
insufficient
working
life
evaporator.
Herein,
novel
system
involving
all‐fiber
porous
cylinder‐like
foam
3D
evaporator,
side
area‐assisted
protocol,
aggregation‐induced‐emission‐active
solar
absorber
with
“one
stone
two
birds”
function
explored.
The
exhibits
efficient
photothermal
conversion,
endowing
evaporator
high
3.6
kg
m
−2
h
−1
rate,
which
highly
desirable
under
1
sun
irradiation.
Moreover,
capable
powerfully
producing
reactive
oxygen
species
upon
sunlight
irradiation,
results
extraordinary
photodynamic
killing
bacteria
nearby
fiber
prevent
biofouling,
consequently
improving