卤化物
钙钛矿(结构)
制作
材料科学
光伏系统
涂层
沉积(地质)
纳米技术
介孔材料
模具(集成电路)
旋涂
光电子学
化学工程
化学
无机化学
电气工程
催化作用
沉积物
医学
替代医学
生物化学
古生物学
病理
工程类
生物
作者
Giovanni Cotella,Jenny Baker,David Worsley,Francesca De Rossi,Cameron Pleydell‐Pearce,Matthew J. Carnie,Trystan Watson
标识
DOI:10.1016/j.solmat.2016.09.013
摘要
Recent advances in the performance and stability of lead halide perovskite solar cells announce a promising future for this technology. As the understanding of lab scale device fabrication progresses technology developments in the area of up-scaling are required to demonstrate their viability on an industrial and pre-commercial scale. These developments include replacing slow spin coated deposition techniques with continuous roll to roll compatible slot-die methods. In this work we demonstrate the suitability of a one-step slot-die coating method for the deposition of lead halide perovskite layers, in particular for infiltration into a mesoporous titania scaffold. Appropriate crystallisation dynamics of the perovskite are achieved by careful control of the substrate temperature in combination with a post-processed rapid air knife application. We show that devices fully processed in air using this method deliver a photovoltaic conversion efficiency up to 9.2%, this is comparable to those manufactured using a spin coating process.
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