首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >'Brick and Mortar' Strategy for the Formation of Highly Crystalline Mesoporous Titania Films from Nanocrystalline Building Blocks
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'Brick and Mortar' Strategy for the Formation of Highly Crystalline Mesoporous Titania Films from Nanocrystalline Building Blocks

机译:“砖和砂浆”策略,由纳米晶构建块形成高度结晶的介孔二氧化钛薄膜

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摘要

We present a novel "brick and mortar" strategy for creating highly efficient transparent TiO2 coatings for photocatalytic and photovoltaic applications. Our approach is based on the fusion of preformed titania nanocrystalline "bricks" through surfactant-templated sol—gel titania "mortar", which acts as a structure-directing matrix and as a chemical glue. The similar chemical composition of both bricks and mortar leads to a striking synergy in the interaction of crystalline and amorphous components, such that crystallization is enhanced upon thermal treatment and highly porous and highly crystalline structures are formed at very mild conditions. Coatings with a broad variety of periodic mesostructures and thicknesses ranging from few nanometers to several micrometers are accessible using the same organic template, and the final structures are tunable by varying the fraction of the "bricks". The beneficial combination of crystallinity and porosity leads to greatly enhanced activity of the films in photocatalytic processes, such as the photooxidation of NO. Acting as the active layers in dye-sensitized solar cells, films of only 2.7 μm in thickness exhibit a conversion efficiency of 6.0%.
机译:我们提出了一种新颖的“砖混”策略,以创建用于光催化和光伏应用的高效透明TiO2涂层。我们的方法基于预先形成的二氧化钛纳米晶“砖”通过表面活性剂模板化的溶胶-凝胶二氧化钛“砂浆”的融合,它充当结构导向基质和化学胶。砖和灰浆的相似化学组成导致结晶和无定形组分之间相互作用具有惊人的协同作用,从而在热处理时增强了结晶作用,并在非常温和的条件下形成了高度多孔和高度结晶的结构。可以使用相同的有机模板获得具有多种周期性介观结构和厚度(从几纳米到几微米)的涂层,并且可以通过改变“砖”的比例来调节最终结构。结晶度和孔隙率的有益组合导致膜在光催化过程(例如NO的光氧化)中的活性大大增强。作为染料敏化太阳能电池中的活性层,厚度仅为2.7μm的薄膜的转换效率为6.0%。

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