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首页> 外文期刊>ACS applied materials & interfaces >Stoichiometry Gradient, Cation Interdiffusion, and Band Alignment between a Nanosized TiO2 Blocking Layer and a Transparent Conductive Oxide in Dye-Sensitized Solar Cell Front Contacts
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Stoichiometry Gradient, Cation Interdiffusion, and Band Alignment between a Nanosized TiO2 Blocking Layer and a Transparent Conductive Oxide in Dye-Sensitized Solar Cell Front Contacts

机译:染料敏化太阳能电池正面触点中的化学计量比梯度,阳离子相互扩散以及纳米级TiO2阻挡层和透明导电氧化物之间的能带对准

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摘要

An angle-resolved photoemission spectroscopy study allowed us to identify cation interdiffusion and stoichiometry gradients at the interface between a nanosized TiO2 blocking layer and a transparent conductive Cd-Sn oxide substrate. A stoichiometry gradient for the Sn cations is already found in the bare Cd-Sn oxide layer. When TiO2 ultrathin layers are deposited by RF sputtering on the Cd-Sn oxide layer, Ti is found to partially replace Sn, resulting in a Cd-Sn-Ti mixed oxide layer with a thickness ranging from 0.85 to 3.3 nm. The band gap profile across the junction has been reconstructed for three TiO2 layers, resulting in a valence band offset decrease (and a conduction band offset increase) with the blocking layer thickness. The results are related to the cell efficiencies in terms of charge injection and recombination processes.
机译:角度分辨光发射光谱学研究使我们能够确定在纳米尺寸TiO2阻挡层和透明导电Cd-Sn氧化物衬底之间的界面处的阳离子互扩散和化学计量梯度。在裸露的Cd-Sn氧化物层中已经发现Sn阳离子的化学计量梯度。当通过RF溅射在Cd-Sn氧化物层上沉积TiO2超薄层时,发现Ti部分替代了Sn,从而形成了厚度为0.85至3.3 nm的Cd-Sn-Ti混合氧化物层。对于三层TiO2层,已经重建了跨结的带隙分布,导致价带偏移随阻挡层厚度的增加而减小(导带偏移增加)。结果与电荷注入和重组过程方面的电池效率有关。

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