材料科学
结晶度
能量转换效率
钙钛矿(结构)
湿度
粒度
平面的
晶界
化学工程
纳米技术
光电子学
复合材料
工程类
计算机图形学(图像)
物理
热力学
微观结构
计算机科学
作者
Ranyun Wu,Jianjian Yao,Siliang Wang,Xiaowen Zhou,Qiang Wang,Liang Gao,Weisheng Ding,Xin Dang,Wei Zeng
标识
DOI:10.1021/acsami.8b17300
摘要
Planar perovskite solar cells (PSCs) have exhibited a promising alternative for high efficiency recently because of a new record of certified power conversion efficiency (PCE) of 21.5%. At the present stage of PSCs, achieving further improvements for long-term stability and efficiency are the key issues. It is necessary to fabricate PSCs with good interface and film crystallinity. Here, planar PSCs are fabricated by a synergistic effect of dimethyl sulfoxide additive and a dropwise addition method in a two-step deposition method. Under the optimizing procedure, a large-grain perovskite film with well-packed flat crystals is induced with a largest grain size of about 5 μm, which reveals decreased defect states owing to reduced grain boundaries. Moreover, the film has a highly compact and flat surface, leading to high crystallinity, enhanced light absorption, and low carrier recombination rates. Corresponding PCE is significantly promoted to 20.63% from the original 16.02%. More importantly, the PSCs even without encapsulation exhibit excellent humidity stability, retaining 93% of its initial efficiency after 500 h in air with 40% humidity, whereas the pristine devices degrade by approximately 65% after only surviving for 256 h. Therefore, the result provides a promising route for preparation of large-grain perovskite films and high-performance and stable PSCs.
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