El-Samak Ali A, Ponnamma Deepalekshmi, Hassan Mohammad K, Adham Samer, Karim Alamgir, Ammar Ali, Alser Maha, Shurbaji Samar, Eltai Nahla O, Al-Maadeed Mariam Al Ali
Center for Advanced Materials, Qatar University, P.O. Box 2713, Doha, Qatar.
ConocoPhilips Global Water Sustainability Center, Qatar Science and Technology Park, P.O. Box 24750, Doha, Qatar.
ACS Omega. 2021 Mar 17;6(12):8081-8093. doi: 10.1021/acsomega.0c05683. eCollection 2021 Mar 30.
Hydrophobic microporous polystyrene (PS) fibers are fabricated by a solvent-induced phase-separation-assisted electrospinning method. Zinc oxide (ZnO) and silver-doped zinc oxide (Ag-ZnO) nanomaterials with variable morphologies are added to the PS fibers, to investigate the influence of multifunctional nanofiller addition on the porosity and consequent oil-adsorbing properties for different oil types. The doping of silver as well as the uniformity in particle distribution are confirmed by scanning electron microscopy and the energy-dispersive spectral analyses. The porosity of the fibers and their crystallinity effect depend on the hydrophobicity and surface properties of these microporous nanofilled fibers. Ag-ZnO, specifically in 2 wt %, enhanced the pore size and distribution in PS porous fibers, thereby enhancing the oil-adsorbing property and its hydrophobicity. In-depth analysis of the oil adsorption mechanism is done for the fibers, both qualitatively and quantitatively, to demonstrate its correlation with the structural integrity of the fibers. The PS/2Ag-ZnO composite also exhibits the highest antibacterial performance against , a general indication of antibiological fouling properties of these oil-separating films. The antifouling/antibacterial activity of the nanoparticles and high oil sorption capacity of the highly porous PS composites show great potential for use in water-treatment-related applications.
通过溶剂诱导相分离辅助静电纺丝法制备了疏水性微孔聚苯乙烯(PS)纤维。将具有可变形态的氧化锌(ZnO)和银掺杂氧化锌(Ag-ZnO)纳米材料添加到PS纤维中,以研究添加多功能纳米填料对不同油类的孔隙率及由此产生的吸油性能的影响。通过扫描电子显微镜和能量色散光谱分析证实了银的掺杂以及颗粒分布的均匀性。纤维的孔隙率及其结晶度效应取决于这些微孔纳米填充纤维的疏水性和表面性质。特别是2 wt%的Ag-ZnO提高了PS多孔纤维的孔径和分布,从而提高了吸油性能及其疏水性。对纤维的吸油机理进行了定性和定量的深入分析,以证明其与纤维结构完整性的相关性。PS/2Ag-ZnO复合材料对 也表现出最高的抗菌性能,这是这些油分离膜抗生物污染性能的一般指标。纳米颗粒的防污/抗菌活性和高度多孔PS复合材料的高吸油能力在水处理相关应用中显示出巨大的潜力。