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Surface characterisation and photocatalytic performance of N-doped TiO2 thin films deposited onto 200 nm pore size alumina membranes by sol-gel methods

机译:溶胶-凝胶法在200 nm孔径氧化铝膜上沉积N掺杂的TiO 2 薄膜的表面表征和光催化性能

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摘要

© 2015 Elsevier B.V. Membrane filtration is employed for water treatment and wastewater reclamation purposes, but membranes alone are unable to remove pollutant molecules and certain pathogens. Photocatalytically active N-doped TiO coatings have been deposited by sol-gel onto 200 nm pore size alumina membranes for water treatment applications using two different methods, via pipette droplets or spiral bar applicator. The uncoated and coated membranes were characterised by X-ray photoelectron spectroscopy (XPS), scanning electron microscopy (SEM), X-ray diffraction (XRD) and energy dispersive X-ray spectrometry (EDX). Both coatings showed the presence of N-doped anatase, with a surface coverage between 84 and 92%, and nitrogen concentration (predominantly interstitial) of 0.9 at.%. The spiral bar applicator deposited coatings exhibit a thicker mud-cracked surface layer with limited penetration of the porous membrane, whilst the pipette deposited coatings have mostly penetrated into the bulk of the membrane and a thinner layer is present at the surface. The photocatalytic activity (PCA), measured through the degradation of carbamazepine (CBZ), under irradiation of a solar simulator was 58.6% for the pipette coating and 63.3% for the spiral bar coating. These photocatalytically active N-doped sol-gel coated membranes offer strong potential in forming the fundamental basis of a sunlight based water treatment system.
机译:©2015 Elsevier B.V.膜过滤用于水处理和废水回收,但仅膜无法去除污染物分子和某些病原体。已经使用溶胶-凝胶将光催化活性的N掺杂的TiO涂层通过移液器液滴或螺旋棒施加器通过两种不同方法通过溶胶-凝胶沉积在200 nm孔径的氧化铝膜上用于水处理应用。通过X射线光电子能谱(XPS),扫描电子显微镜(SEM),X射线衍射(XRD)和能量色散X射线光谱法(EDX)表征未涂覆和涂覆的膜。两种涂层均显示存在N掺杂的锐钛矿,其表面覆盖率介于84%和92%之间,氮浓度(主要是间隙)为0.9 at。%。螺旋棒涂布器沉积的涂层表现出较厚的泥裂表面层,多孔膜的渗透受限,而移液管沉积的涂层大部分已渗透到膜的大部分中,并且在表面处存在较薄的层。在太阳模拟器的照射下,通过卡马西平(CBZ)的降解测量的光催化活性(PCA)对于移液器涂层为58.6%,对于螺旋棒涂层为63.3%。这些光催化活性的N掺杂溶胶凝胶涂层膜在形成基于日光的水处理系统的基本基础方面具有强大的潜力。

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