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首页> 外文期刊>Applied Surface Science >Synthesis of 3D dahlia-like Co_3O_4 and its application in superhydrophobic and oil-water separation
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Synthesis of 3D dahlia-like Co_3O_4 and its application in superhydrophobic and oil-water separation

机译:3D大丽花状Co_3O_4的合成及其在超疏水和油水分离中的应用

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The synthesis of nanomaterial on porous materials and use of their porous structure for oil-water separation and oil absorption underwater at normal temperature and pressure are a very significant process, which has attracted wide attention. In this paper, dahlia-like Co3O4 nanoparticles was synthesized on the surface of porous nickel foam by hydrothermal reaction. After modification with heptadecafluoro-1,1,2,2-tetrahydro-decyl-1-trimethoxysilane (FAS-17), the as-prepared sample surface could obtain good oleophobicity and excellent superhydrophobicity with high contact angles and low sliding angles. Furthermore, the as-prepared superhydrophobic composite had low adhesion to water and light oil, and could be subjected to simple and effective oil-water separation (including three light oil and one heavy oil) at normal temperature and pressure. Due to the magnetic properties of nickel foam, underwater oil absorption experiment was carried out by magnetic traction, which could achieve a perfect oil absorption effect. In addition, the comprehensive use of unmodified and modified Co3O4ickel foam at the end of tube can quickly and efficiently carry heavy oil (trichloromethane)-water separation and collection. Therefore, the as-prepared dahila-like Co3O4 on nickel foam not only has good application value in oil-water separation, but also has excellent potential in underwater oil absorption.
机译:在多孔材料上合成纳米材料以及利用其多孔结构在常温常压下进行油水分离和水下吸油是一个非常重要的过程,受到了广泛的关注。本文通过水热反应在多孔镍泡沫表面合成了大丽花状的Co3O4纳米粒子。用七氟-1,1,2,2-四氢癸基-1-三甲氧基硅烷(FAS-17)改性后,所制备的样品表面具有良好的疏油性和优异的超疏水性,并具有高接触角和低滑动角。此外,所制备的超疏水复合材料对水和轻油的粘附性低,并且可以在常温常压下进行简单有效的油水分离(包括三种轻油和一种重油)。由于泡沫镍的磁性,通过磁力牵引进行了水下吸油实验,可以达到理想的吸油效果。此外,在管端全面使用未改性和改性的Co3O4 /镍泡沫可快速有效地进行重油(三氯甲烷)-水的分离和收集。因此,所制备的泡沫状的达希拉状Co 3 O 4不仅在油水分离中具有良好的应用价值,而且在水下吸油方面具有极好的潜力。

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