首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Roll to roll atmospheric pressure plasma enhanced CVD of titania as a step towards the realisation of large area perovskite solar cell technology
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Roll to roll atmospheric pressure plasma enhanced CVD of titania as a step towards the realisation of large area perovskite solar cell technology

机译:卷滚动大气压等离子体增强的Titania CVD作为实现大面积普罗夫斯基钛矿太阳能电池技术的一步

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Atmospheric pressure plasma enhanced CVD (AP PECVD) systems have attracted considerable interest in recent years due to the significant benefits for large area, low cost substrates and low temperature operation. In this work we describe the use of a bespoke roll to roll AP PECVD process to produce large area, functional TiO2-x films for use as hole blocking electron transport layers in perovskite solar cell architectures, a critical component typically produced by spin coating or vacuum based technologies. The AP PECVD produced films can be used to construct cells with overall efficiencies greater than from the sputtered reference material (13.57 vs. 13.15% maximum power point for 1 cm(2) cells). Discussion of the cell properties suggests scope for further optimisation, maximising the potential of this approach.
机译:由于大面积,低成本基板和低温操作,近年来,大气压等离子体增强CVD(AP PECVD)系统引起了相当大的兴趣。 在这项工作中,我们描述了使用定制卷来滚动AP PECVD工艺以产生大面积,功能性TiO2-X薄膜,用于佩洛夫斯基特太阳能电池架构中的孔阻挡电子传输层,通常由旋涂或真空产生的关键组分 基于技术。 AP PECVD产生的薄膜可用于构建具有大于溅射的参考材料的整体效率的细胞(13.57 Vs.13.15%最大功率点,1cm(2)细胞)。 对细胞性质的讨论表明,进一步优化的范围,最大化这种方法的潜力。

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