三碘化物
钙钛矿(结构)
材料科学
光电子学
带隙
微晶
能量转换效率
吸收(声学)
开路电压
太阳能电池
Crystal(编程语言)
电压
化学
结晶学
电极
色素敏化染料
复合材料
程序设计语言
物理
物理化学
量子力学
计算机科学
电解质
冶金
作者
Zhaolai Chen,Qingfeng Dong,Ye Liu,Chunxiong Bao,Yanjun Fang,Yun Lin,Shi Tang,Qi Wang,Xun Xiao,Yang Bai,Yehao Deng,Jinsong Huang
标识
DOI:10.1038/s41467-017-02039-5
摘要
The efficiency of perovskite solar cells has surged in the past few years, while the bandgaps of current perovskite materials for record efficiencies are much larger than the optimal value, which makes the efficiency far lower than the Shockley-Queisser efficiency limit. Here we show that utilizing the below-bandgap absorption of perovskite single crystals can narrow down their effective optical bandgap without changing the composition. Thin methylammonium lead triiodide single crystals with tuned thickness of tens of micrometers are directly grown on hole-transport-layer covered substrates by a hydrophobic interface confined lateral crystal growth method. The spectral response of the methylammonium lead triiodide single crystal solar cells is extended to 820 nm, 20 nm broader than the corresponding polycrystalline thin-film solar cells. The open-circuit voltage and fill factor are not sacrificed, resulting in an efficiency of 17.8% for single crystal perovskite solar cells.
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