Department of Materials Science and Engineering , Yonsei University , 50 Yonsei-ro Seodaemun-gu , Seoul 03722 , Republic of Korea.
ACS Appl Mater Interfaces. 2018 May 2;10(17):14649-14658. doi: 10.1021/acsami.8b00549. Epub 2018 Apr 17.
Organic-inorganic hybrid perovskite solar cells (PSCs) are considered promising materials for low-cost solar energy harvesting technology. An electron transport layer (ETL), which facilitates the extraction of photogenerated electrons and their transport to the electrodes, is a key component in planar PSCs. In this study, a new strategy to concurrently manipulate the electrical and optical properties of ETLs to improve the performance of PSCs is demonstrated. A careful control over the Ti alkoxide-based sol-gel chemistry leads to a craterlike porous/blocking bilayer TiO ETL with relatively uniform surface pores of 220 nm diameter. Additionally, the phase separation promoter added to the precursor solution enables nitrogen doping in the TiO lattice, thus generating oxygen vacancies. The craterlike surface morphology allows for better light transmission because of reduced reflection, and the electrically conductive craterlike bilayer ETL enhances charge extraction and transport. Through these synergetic improvements in both optical and electrical properties, the power conversion efficiency of craterlike bilayer TiO ETL-based PSCs could be increased from 13.7 to 16.0% as compared to conventional dense TiO-based PSCs.
有机-无机杂化钙钛矿太阳能电池(PSCs)被认为是低成本太阳能收集技术有前途的材料。电子传输层(ETL)是平面 PSCs 的关键组成部分,它有助于提取光生电子并将其传输到电极。在这项研究中,展示了一种同时操纵 ETL 的电学和光学性质以提高 PSCs 性能的新策略。通过对钛醇盐溶胶-凝胶化学的精细控制,得到了具有相对均匀的 220nm 直径表面孔的火山口状多孔/阻塞双层 TiO ETL。此外,添加到前体溶液中的相分离促进剂能够在 TiO 晶格中进行氮掺杂,从而产生氧空位。火山口状表面形貌允许更好的光传输,因为减少了反射,而导电的火山口状双层 ETL 增强了电荷提取和传输。通过光学和电学性能的协同改善,与传统的致密 TiO 基 PSCs 相比,基于火山口状双层 TiO ETL 的 PSCs 的功率转换效率可以从 13.7%提高到 16.0%。