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Mesoporous silica filled smart super oleophilic fibers of triblock copolymer nanocomposites for oil absorption applications

Yara Elgawady, Deepalekshmi Ponnamma, Samer Adham, Mashael Al-Maas, Ali Ammar, Karim Alamgir, Mariam Al Ali Al‐Maadeed, Mohammad K. Hassan

2020Emergent Materials26 citationsDOIOpen Access PDF

Abstract

Abstract Super oleophilic fibers of styrene-isoprene-styrene (SIS) block copolymer/mesoporous silica (MS) nanocomposites are fabricated by electrospinning, and their oil absorption efficiency is monitored by following two different approaches. The first way is by using the fibers as tubular packing materials for oil absorption, whereas the second approach uses the fibers as filtration membrane after deposition on the commercial polyethersulfone (PES) support. All composites are made by adding inorganic MS in different concentrations (2, 4, and 7 wt.%) to SIS block copolymer. The addition of MS increases the fiber diameters and leads to enlarged and bead-like appearances, especially at higher filler concentrations. The oil absorption efficiency is explored based on the oil absorption capacity of the samples as well as with the gravity-driven oil filtration experiments. The best oil absorption efficiency is achieved by the 4 wt.% SIS-MS composite (150% higher oil absorption capacity compared to the neat SIS), and it is used to spin on the PES mechanical support of different pore sizes (0.2 μ and 8 μ). Ultrafiltration tests conducted on those coated membranes observe improved oil rejection performance as the fibrous SIS-MS are layered on the commercial mechanical support.

Topics & Concepts

Materials scienceCopolymerElectrospinningAbsorption (acoustics)NanocompositeChemical engineeringMesoporous materialComposite materialComposite numberFiltration (mathematics)StyreneFiberMembranePolystyrenePolymerOrganic chemistryChemistryStatisticsCatalysisEngineeringMathematicsBiochemistrySurface Modification and SuperhydrophobicityElectrospun Nanofibers in Biomedical ApplicationsAdvanced Sensor and Energy Harvesting Materials
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