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Comparing Water Transport Properties of Janus Membranes Fabricated from Copper Mesh and Foam Using a Femtosecond Laser
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posted on 2023-01-25, 13:45 authored by Vadim Sh. Yalishev, Naveed A. Abbasi, Mazhar Iqbal, Ali S. AlnaserOne of the important aspects of manipulating
and controlling
liquid
transport is the design of membrane surfaces. Janus membranes with
opposite wettability characteristics can be manufactured for efficient
directional water transfer. In this work, two types of materials were
used to fabricate membranes with an asymmetric wettability behavior:
copper foam and copper mesh. One side of the membranes was treated
by scanning with a femtosecond laser beam, as a result of which it
was converted to a superhydrophilic state, while the untreated side
remained hydrophobic. Both membranes demonstrated excellent properties
of a water diode through which water droplets could easily pass from
the hydrophobic side to the hydrophilic side, but not vice versa.
This behavior was achieved by finding the optimal laser scanning speed.
This type of Janus membrane has found applications in collecting water
droplets from fog; therefore, the samples obtained were also tested
in terms of harvesting micro-droplets. The Janus mesh-based structure
has demonstrated a higher water collection efficiency (3.9 g/cm2 h) compared to the foam-based membrane (2.5 g/cm2 h). Since the fog–water conversion efficiency decreased over
time (to 0.5 g/cm2 h in 2 weeks) due to the absorbance
of organic pollutants, a coating of titanium oxide was applied to
the laser-treated side of the Janus membranes. As a result, the effective
function of the systems became distinctly long-lasting and was well
maintained for at least 60 days. Moreover, the fabricated systems
were protected from further degradation by simply placing them under
sunlight for several hours. Our results prove to be useful in developing
asymmetric hydrophobic–superhydrophilic membranes, which have
potential applications in high-precision drop control and in harvesting
water from arid environments.
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precision drop controlopposite wettability characteristicsleast 60 dayscontrolling liquid transportfemtosecond laser beamasymmetric wettability behaviorfemtosecond laser onecollecting water droplets2 supjanus membranes fabricatedone sidefabricated systemswater diodeharvesting waterjanus meshjanus membranesjanus membranewell maintainedvice versatwo typestitanium oxidesuperhydrophilic statesimply placingseveral hourssamples obtainedresults provepotential applicationsorganic pollutantsmembrane surfacesimportant aspectshydrophobic sidehydrophilic sideharvesting microfound applicationsfabricate membraneseffective functioncopper meshbased structurebased membranearid environmentsalso tested9 g5 g2 weeks