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基于双异丙醇钛处理的TiO₂介孔层的钙钛矿太阳能电池表征

Characterization of Perovskite Solar Cells According to TiO₂ Mesoporous Layer Treated with Ti-Diisopropoxide Bis.

作者信息

Hwang Ji Yong, Choi Hyung Wook

机构信息

Department of Electrical Engineering, Gachon University, 1342, Seongnam-daero Sujeong-gu Seongnam-si Gyeonggi-do 13120, South Korea.

出版信息

J Nanosci Nanotechnol. 2021 Mar 1;21(3):1804-1808. doi: 10.1166/jnn.2021.18940.

Abstract

The power conversion efficiency of perovskite solar cells, which are next-generation photovoltaic cells, has rapidly increased up to 20% through ongoing research and development. Recently, various methods have been employed to increase the active area of the mesoporous layer in perovskite solar cells. In this study, the particle aggregation of the TiO₂ was controlled by adding Ti-diisopropoxide bis to the mesoporous layer solution; thus, the contact area between the mesoporous layer and perovskite layer was increased. The amount of Ti-diisopropoxide bis added to the mesoporous layer solution was adjusted to prevent the inhibition of electron transport caused by separation of particles and instability of mesoporous layer. To evaluate the changes in the characteristics of the perovskite solar cells due to the TiO₂ particle aggregation in the mesoporous layer, X-ray diffraction and spectrophotometric absorbance, as well as cross-sectional and surface scanning electron microscopy measurement were performed, and the current density-voltage curve, power conversion efficiency and other properties were evaluated under solar simulator. It was found that the mesoporous layer was improved due to its enlarged contact area, and hence, can be expected to improve the efficiency of perovskite solar cells.

摘要

作为下一代光伏电池的钙钛矿太阳能电池,通过持续的研发,其功率转换效率已迅速提高到20%。最近,人们采用了各种方法来增加钙钛矿太阳能电池中介孔层的活性面积。在本研究中,通过向介孔层溶液中添加二异丙醇钛来控制TiO₂的颗粒聚集;因此,增加了介孔层与钙钛矿层之间的接触面积。调整添加到介孔层溶液中的二异丙醇钛的量,以防止由于颗粒分离和介孔层的不稳定性而导致的电子传输抑制。为了评估介孔层中TiO₂颗粒聚集对钙钛矿太阳能电池特性的影响,进行了X射线衍射、分光光度吸收以及横截面和表面扫描电子显微镜测量,并在太阳模拟器下评估了电流密度-电压曲线、功率转换效率和其他性能。结果发现,介孔层由于其扩大的接触面积而得到改善,因此,可以预期提高钙钛矿太阳能电池的效率。

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