Zhou Tong, Lai Hongtao, Liu Tingting, Lu Di, Wan Xiangjian, Zhang Xiaodan, Liu Yongsheng, Chen Yongsheng
The Centre of Nanoscale Science and Technology and Key Laboratory of Functional Polymer Materials, Institute of Polymer Chemistry, College of Chemistry, Nankai University, Tianjin, 300071, China.
Renewable Energy Conversion and Storage Center, Nankai University, Tianjin, 300071, China.
Adv Mater. 2019 Aug;31(32):e1901242. doi: 10.1002/adma.201901242. Epub 2019 Jun 13.
Highly efficient and stable 2D/3D hybrid perovskite solar cells using 2-thiophenemethylammonium (ThMA) as the spacer cation are successfully demonstrated. It is found that the incorporation of ThMA spacer cation into 3D perovskite, which forms a 2D/3D hybrid structure, can effectively induce the crystalline growth and orientation, passivate the trap states, and hinder the ion motion, resulting in improved carrier lifetime and reduced recombination losses. The optimized device exhibits a power conversion efficiency (PCE) of 21.49%, combined with a high V of 1.16 V and a notable fill factor (FF) of 81%. More importantly, an encapsulated 2D/3D hybrid perovskite device sustains ≈99% of its initial PCE after 1680 h in the ambient atmosphere, whereas the control 3D perovskite device drops to ≈80% of the original performance. Importantly, the device stability under continuous light soaking (100 mW cm ) is enhanced significantly for 2D/3D perovskite device in comparison with that of the control device. These results reveal excellent photovoltaic properties and intrinsic stabilities of the 2D/3D hybrid perovskites using ThMA as the spacer cation.
成功展示了使用2-噻吩甲基铵(ThMA)作为间隔阳离子的高效稳定的二维/三维混合钙钛矿太阳能电池。研究发现,将ThMA间隔阳离子引入三维钙钛矿中形成二维/三维混合结构,可以有效地诱导晶体生长和取向,钝化陷阱态,并阻碍离子运动,从而延长载流子寿命并减少复合损失。优化后的器件功率转换效率(PCE)为21.49%,具有1.16 V的高开路电压和81%的显著填充因子(FF)。更重要的是,一个封装的二维/三维混合钙钛矿器件在环境大气中放置1680小时后仍能保持其初始PCE的约99%,而对照的三维钙钛矿器件则降至原始性能的约80%。重要的是,与对照器件相比,二维/三维钙钛矿器件在连续光照(100 mW/cm²)下的稳定性显著增强。这些结果揭示了使用ThMA作为间隔阳离子的二维/三维混合钙钛矿具有优异的光伏性能和内在稳定性。