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Growth stages of nano-structured mixed-phase titania thin films and effect on photocatalytic activity

机译:纳米结构混合相二氧化钛薄膜的生长阶段及其对光催化活性的影响

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The development of nano-structured mixed-phase titania thin films and the relationship to photocatalytic activity (PCA) is of interest for pollution reduction and antimicrobial applications. A set of films grown by pulsed pressure metallorganic chemical vapour deposition using titanium tetraisopropoxide precursor was studied. The growth method is single-stage, scalable and produces high-quality, adherent films. Film thicknesses were 101 nm to 4.0 mu m. Three growth stages were identified. All films were a mixture of anatase and ruffle. Early stage films had rounded morphologies, low surface roughness and low PCA. Transition stage films developed columnar [110] orientated anatase dendrites, contained amorphous carbon and had reduced UV transmittance. Late stage films had strong anatase (220) and ruffle (200) textures, contained amorphous carbon and exhibited highly branched anatase dendrites with nanoscale secondary plates. PCA was determined from degradation of stearic acid and correlated with increasing surface roughness. The most active film had formal quantum efficiency of (6.62 +/- 0.64) x 10(-4) molecules/photon, 59 times higher than a commercially available control. The performance is attributed to the combination of phases yielding polymorphic phase boundaries and amorphous carbon enhancing the adsorption of organic molecules, the unusual (220) anatase texture yielding nanostructured anatase dendrites in combination with nanocrystalline ruffle and hierarchical porosity.
机译:纳米结构混合相二氧化钛薄膜的发展及其与光催化活性(PCA)的关系对于减少污染和抗菌应用具有重要意义。研究了使用四异丙氧基钛前驱体通过脉冲金属有机化学气相沉积法生长的一组薄膜。该生长方法是单阶段的,可扩展的,并且可以生产高质量的粘附膜。膜厚度为101nm至4.0μm。确定了三个生长阶段。所有电影都是锐钛矿和皱纹的混合物。早期的薄膜具有圆形的形态,低的表面粗糙度和低的PCA。过渡阶段的膜形成了柱状[110]取向的锐钛矿树突状晶体,包含无定形碳并降低了紫外线透过率。后期薄膜具有强锐钛矿(220)和褶皱(200)的质地,包含无定形碳,并显示具有纳米级次板的高度分支的锐钛矿树突。 PCA由硬脂酸降解确定,并与表面粗糙度增加相关。活性最高的薄膜的形式量子效率为(6.62 +/- 0.64)x 10(-4)分子/光子,是市售对照品的59倍。该性能归因于产生多态相边界的相和增强有机分子吸附的无定形碳的组合,产生纳米结构锐钛矿枝晶的不寻常的(220)锐钛矿织构以及纳米晶褶皱和分层孔隙率。

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