材料科学
能量转换效率
钙钛矿(结构)
制作
堆栈(抽象数据类型)
活动层
介孔材料
光电子学
图层(电子)
导电体
纳米技术
化学工程
复合材料
催化作用
工程类
病理
薄膜晶体管
化学
医学
程序设计语言
替代医学
生物化学
计算机科学
作者
Francesca De Rossi,Jenny Baker,David Beynon,Katherine Hooper,Simone Meroni,Daniel Williams,Zhengfei Wei,Amrita Yasin,Cécile Charbonneau,Eifion Jewell,Trystan Watson
标识
DOI:10.1002/admt.201800156
摘要
Abstract Perovskite solar cells based on an all printable mesoporous stack, made of overlapping titania, zirconia, and carbon layers, represent a promising device architecture for both simple, low‐cost manufacture, and outstanding stability. Here a breakthrough in the upscaling of this technology is reported: Screen printed modules on A4 sized conductive glass substrates, delivering power conversion efficiency (PCE) ranging from 3 to 5% at 1 sun on an unprecedented 198 cm 2 active area. An increase in the PCE, due to higher V OC and fill factor, is demonstrated by patterning the TiO 2 blocking layer. Furthermore, an unexpected increase of the performance is observed over time, while storing the modules in the dark, unencapsulated, at ambient conditions (with humidity increasing from 30 and 70% RH), resulting in 6.6% PCE and 6.3% stabilised at V max measured after over two months since fabrication. Equally impressive is the low light performance with 11 and 18% PCE achieved respectively at 200 and 1000 lux under fluorescent lighting. It is hoped that this demonstration of good performance on large area can unlock the viability of perovskite solar cells manufactured on an industrial scale.
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