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Surface modification and optical behavior of TiO_2 nanostructures

机译:TiO_2纳米结构的表面改性和光学行为

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TiO_2 is a very important material from the perspective of photocatalytic applications, but due to its 3.2 eV bandgap, it is not possible to make this material efficient under visible illumination. Anatase TiO_2 nanoclusters in the 3 - 30 nm range have been formed by a wet chemical technique and surface modified in order to enhance the absorption of visible light. Nitridation of the highly reactive TiO_2 nanosphere surface has been achieved by a quick and simple treatment in alkyl ammonium compounds and the metallization of this surface has been achieved by electroless plating. Although the structure of the resultant material remains anatase, some of the treated material exhibits strong emission between 550-560 nm, which red shifts and drops in intensity with aging in the atmosphere. Electron Spin Resonance performed on these samples identify a resonance at g = 2.0035, which increases significantly with the nitridation step. This resonance is attributed to an oxygen hole center created near the surface of the nanoclusters, which correlates well the noted optical activity.
机译:TiO_2是一种非常重要的材料,从光催化应用的角度来看,但由于其3.2 eV带隙,因此无法在可见光照明下使该材料有效。通过湿化学技术和表面形成,通过湿化学技术和表面来形成锐钛矿TiO_2纳米单元,以增强可见光的吸收。通过在烷基铵化合物中的快速简单地处理已经实现了高反应性TiO_2纳米环表面的氮化,并且通过化学镀实现了该表面的金属化。尽管所得材料的结构仍然是锐钛矿,但是一些处理的材料在550-560nm之间表现出强烈的发射,其红色移位和滴在大气中的老化。在这些样品上进行的电子自旋共振识别G = 2.0035的共振,其随着氮化步骤而显着增加。该共振归因于在纳米能器的表面附近产生的氧气孔中心,其良好地相关的光学活性。

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