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一步旋涂法制备具有连续致密和介孔 TiO 薄膜的高浓度钙钛矿太阳能电池。

High Consistency Perovskite Solar Cell with a Consecutive Compact and Mesoporous TiO Film by One-Step Spin-Coating.

机构信息

Key Laboratory of Novel Thin Film Solar Cells, Institute of Applied Technology, Hefei Institutes of Physical Science, Chinese Academy of Sciences , Hefei, 230031, P. R. China.

University of Science and Technology of China , Hefei, 230026, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2016 Dec 28;8(51):35440-35446. doi: 10.1021/acsami.6b11860. Epub 2016 Dec 15.

Abstract

Generally, in classic mesoscopic perovskite solar cells (PSCs), the compact blocking layer and mesoporous scaffold layer prepared by two steps or more will inevitably form an interface between them. It is undoubted that the interface contact is not conducive to electron transport and would increase the recombination in the device, resulting in the inferior performance of PSCs. In this work, we constructed a consecutive compact and mesoporous (CCM) TiO film to substitute the compact blocking layer and scaffold layer for mesoscopic PSCs. The bottom of the CCM TiO film was dense and the top was mesoporous with large uniform macropores. The two parts of the film were consecutive, which could promote the electron transport rate and decrease the charge recombination effectively. Moreover, due to the existence of macropores in the CCM TiO film, it was propitious to the deposition of perovskite and charge separation for the perovskite layer. Over 15.0% of average power conversion efficiency (PCE) with high consistency photovoltaic performances was achieved for the CCM TiO film based mesoscopic PSCs, which is higher than that with a classic mesoporous structure.

摘要

通常,在经典的介观钙钛矿太阳能电池(PSC)中,通过两步或更多步制备的致密阻挡层和介孔支架层之间必然会形成界面。毫无疑问,界面接触不利于电子传输,并会增加器件中的复合,从而导致 PSC 的性能下降。在这项工作中,我们构建了连续致密和介孔(CCM)TiO 薄膜,以替代介观 PSC 的致密阻挡层和支架层。CCM TiO 薄膜的底部致密,顶部介孔,具有较大且均匀的大孔。薄膜的两部分是连续的,这可以有效提高电子传输速率并降低电荷复合。此外,由于 CCM TiO 薄膜中存在大孔,有利于钙钛矿的沉积和电荷分离。基于 CCM TiO 薄膜的介观 PSC 的平均功率转换效率(PCE)超过 15.0%,具有较高的一致性光伏性能,高于具有经典介孔结构的 PSC。

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