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Surface modification of titania aerogel films by oxygen plasma treatment for enhanced dye adsorption

机译:氧等离子体处理二氧化钛气凝胶膜的表面改性以增强染料吸附

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摘要

Titania aerogels were synthesized by sol-gel route followed by ambient pressure subcritical drying technique. The aerogels synthesized in the present work possess a maximum surface area of 252 m(2)/g. The pore size distribution is between 2 and 30 nm which confirms their mesoporosity. The oxygen plasma treatment on titania aerogel thin films improved the surface area up to 273 m(2)/g and produced additional hydrophilic groups on the surface. It is confirmed by BET surface area, XPS and thermal analysis in conjunction with dye adsorption studies. After plasma treatment the dye adsorption capacity was increased 2.5 times higher than that of untreated aerogel film. The increased surface area and the hydrophilic groups generated on the titania aerogel surface during plasma treatment are responsible for enhanced dye adsorption. The overall nanoporous morphology of titania aerogel is preserved after plasma treatment. (C) 2015 Elsevier B.V. All rights reserved.
机译:二氧化钛气凝胶通过溶胶-凝胶法合成,然后在环境压力下进行亚临界干燥。在本工作中合成的气凝胶的最大表面积为252 m(2)/ g。孔径分布在2至30 nm之间,这证实了它们的介孔性。二氧化钛气凝胶薄膜上的氧等离子体处理将表面积提高到273 m(2)/ g,并在表面上产生了额外的亲水基团。 BET表面积,XPS和热分析以及染料吸附研究共同证实了这一点。等离子体处理后,染料的吸附能力比未处理的气凝胶膜提高了2.5倍。在等离子体处理期间,增加的表面积和在二氧化钛气凝胶表面上产生的亲水基团有助于增强染料的吸附。等离子体处理后,二氧化钛气凝胶的整体纳米孔形态得以保留。 (C)2015 Elsevier B.V.保留所有权利。

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