钙钛矿(结构)
微晶
材料科学
晶界
钙钛矿太阳能电池
能量转换效率
载流子寿命
光致发光
粒度
同质性(统计学)
电极
限制
矿物学
光电子学
化学物理
太阳能电池
结晶学
化学
硅
微观结构
复合材料
物理化学
冶金
工程类
统计
机械工程
数学
作者
Wenming Tian,Rongrong Cui,Jing Leng,Junxue Liu,Yajuan Li,Chunyi Zhao,Jun Zhang,Wei Deng,Tianquan Lian,Shengye Jin
标识
DOI:10.1002/anie.201606574
摘要
Abstract Although the power conversion efficiency of perovskite solar cells has improved rapidly, a rational path for further improvement remains unclear. The effect of large morphological heterogeneity of polycrystalline perovskite films on their device performance by photoluminescence (PL) microscopy has now been studied. Contrary to the common belief on the deleterious effect of morphological heterogeneity on carrier lifetimes and diffusivities, in neat CH 3 NH 3 PbI 3 (Cl) polycrystalline perovskite films, the local (intra‐grain) carrier diffusivities in different grains are all surprisingly high (1.5 to 3.3 cm 2 s −1 ; comparable to bulk single‐crystals), and the local carrier lifetimes are long (ca. 200 ns) and surprisingly homogenous among grains, and uniform across grain boundary and interior. However, there is a large heterogeneity of carrier extraction efficiency at the perovskite grain–electrode interface. Improving homogeneity at perovskite grain–electrode contacts is thus a promising direction for improving the performance of perovskite thin‐film solar cells.
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