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Magnetically driven superhydrophobic silica sponge decorated with hierarchical cobalt nanoparticles for selective oil absorption and oil/water separation

机译:磁力驱动的超疏水二氧化硅海绵装饰着分层钴纳米粒子,用于选择性油吸收和油/水分离

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摘要

Three-dimensional superhydrophobic/superoleophilic materials (3D-HOMs) with remote controllability are highly desirable for water remediation. Herein, a new monolithic silica sponge decorated with hierarchical cobalt (Co) nanoparticles that fulfils almost all major requirements and applications for water remediation was fabricated by self-assembly electrospinning, controlled particle precipitation, and subsequent surface coating. Attributing to the continuous silica fibers and the hierarchical Co microstructures, the modified silica sponge (MSS) possesses excellent superhydrophobicity and oil selectivity, low bulk density (49 mg/cm(3)), high surface area (8.7 m(2)/g) and absorption capacity (45-91-fold weight gain), ultrahigh thermal resistance (tolerance to liquid nitrogen and combustion), flexibility, deformability, durability, and remote controllability through magnetic field manipulation. Moreover, simply compacting MSS can easily enhance its separation efficiency by bringing the interior structures to the contacting interfaces, which solves the performance deterioration issue over time for most 3D-HOMs. With all of these satisfactory properties, MSSs can be used as both durable magnetic superabsorbers and efficient oil/water separation filters with a long life span.
机译:具有远程可控性的三维超疏水/超级疏水性材料(3D-HOMS)对于水修复非常理想。这里,通过自组装静电纺丝,受控颗粒沉淀和随后的表面涂层来制造用分层钴(CO)纳米颗粒装饰的新型石英钴(CO)纳米颗粒的纳米颗粒装饰几乎所有主要要求和用于水处理的应用。归因于连续二氧化硅纤维和分层Co微结构,改性二氧化硅海绵(MSS)具有优异的超细纤维性和油选择性,低堆积密度(49mg / cm(3)),高表面积(8.7m(2)/ g )吸收能力(45-91倍重量增益),超高热阻(对液氮的耐受性),灵活性,可变形性,耐用性和通过磁场操纵的远程可控性。此外,简单地,通过将​​内部结构带到接触界面来容易地,可以轻松提高其分离效率,这为大多数3D-HOMS提供了随时间的性能恶化问题。通过所有这些令人满意的性能,MSS可以用作耐用的磁性超吸收器和具有长寿命的高效油/水分离滤光片。

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