首页> 外文期刊>Journal of Colloid and Interface Science >One-step fabrication of highly stable, superhydrophobic composites from controllable and low-cost PMHS/TEOS sols for efficient oil cleanup
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One-step fabrication of highly stable, superhydrophobic composites from controllable and low-cost PMHS/TEOS sols for efficient oil cleanup

机译:由可控且低成本的PMHS / TEOS溶胶一步制造高度稳定的超疏水复合材料,以实现有效的油净化

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摘要

Facing the issues of significant increase of industrial oily wastewater and frequent accident of oil spills, the developing of efficient and affordable absorbents for improving oil pollution is of practical significance. Herein, several superhydrophobic and superoleophilic materials, utilizing filter paper, filter cloth and polyester sponge as substrates, through facile coating of hybrid SiO2 colloid particles from controllable PMHS-TEOS sol system were presented. These methyl-modified particles not only provided hierarchical microano-scale structure with distinct roughness, but also largely lowered the surface energy of the coated substances, leading to excellent superhydrophobic and superoleophilic surfaces. The modified filter cloths could be applied for oil/water separation owing to the flexible and foldable property: sponges could efficiently absorb oil or organic solvents in situ on account of its low density and high porosity, and meanwhile the absorbed oil could be easily recollected by simple squeezing. It is worth mentioning that both modified filter cloths and sponges exhibited excellent selectivity, high efficiency, outstanding rapidity and remarkable recyclability. More importantly, after treatment of 100 abrasion cycles with metal scalpel and strongly acidic and basic water droplets, the whole WCA values of resultant filter cloths still maintained superhydrophobic character (>150 degrees), illuminating the charming mechanical and chemical stability of sol-gel processed coating with hierarchical roughness and covalently bonded methyl groups. Combining controllable fabrication process and cheap raw precursors, this method enables scalable manufacturing of stable and superhydrophobic substances, which are promising in practical applications involved in oil/water separation and oil sorption. (C) 2015 Elsevier Inc. All rights reserved.
机译:面对工业含油废水大量增加和溢油事故多发的问题,开发有效,价格合理的吸收剂以改善油污具有现实意义。本文介绍了几种以滤纸,滤布和聚酯海绵为基材的超疏水和超亲油性材料,通过可控的PMHS-TEOS溶胶体系对SiO2杂化胶体颗粒进行了简便的涂覆。这些甲基改性的颗粒不仅提供具有明显粗糙度的分级的微米/纳米级结构,而且大大降低了涂覆物质的表面能,从而导致优异的超疏水和超亲油性表面。改性滤布具有柔韧性和可折叠性,可用于油水分离:海绵由于密度低,孔隙率高,可以有效地原位吸收油或有机溶剂,同时吸收的油很容易被回收。简单的挤压。值得一提的是,改性滤布和海绵均表现出出色的选择性,高效率,出色的快速性和出色的可回收性。更重要的是,在用金属手术刀以及强酸性和碱性水滴处理了100次磨蚀循环后,所得滤布的整个WCA值仍保持超疏水性(> 150度),这说明了溶胶-凝胶加工的迷人的机械和化学稳定性具有分层粗糙度和共价键合的甲基的涂层。该方法将可控制的制造工艺与廉价的原始原料相结合,可实现稳定和超疏水性物质的可扩展制造,这在涉及油/水分离和吸油的实际应用中很有希望。 (C)2015 Elsevier Inc.保留所有权利。

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