Abdel-Shakour Muhammad, Wang Junfang, Huang Junjie, Gao Zhen, Pan Yongle, Meng Xiangyue
School of Optoelectronics, Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.
Chemistry Department, Faculty of Science, Assiut University, Assiut, 71516, Egypt.
Angew Chem Int Ed Engl. 2025 May 12;64(20):e202421547. doi: 10.1002/anie.202421547. Epub 2025 Mar 4.
The rapid expansion of Big Data and Internet of Things (IoT) has driven significant advancements in indoor photovoltaics (IPVs), which provide power to wireless IoT devices. Tin halide perovskites (THPs) have garnered significant attention for IPVs due to their excellent optoelectronic properties without the environmental risks of lead exposure. However, THPs face challenges in controlling their fast crystallization process. Here, we introduce a novel approach to precisely control the crystallization kinetics of FASnIBr perovskite via the formation of the 6H-intermediate phase, supported by the mesomeric (+M) interaction effect of 4-aminopyridine hydrochloride (4APCl) in the perovskite precursor. The grazing-incidence wide-angle X-ray scattering measurements indicated the formation of 6H-intermediate phase for the FASnIBr-4APCl perovskite during the crystallization process. The in situ ultraviolet-visible absorption spectroscopy during the spin coating and annealing process confirmed the reduction of crystal growth rate after the 6H-intermediate phase formation. Thus, high-quality perovskite films were obtained with reduced defects. The resulting IPVs achieved an efficiency of 21.55 % under indoor illumination at 1000 lux, exceeding all types of lead-free perovskite IPVs.
大数据和物联网(IoT)的迅速发展推动了室内光伏(IPV)的重大进步,室内光伏可为无线物联网设备供电。卤化锡钙钛矿(THP)因其优异的光电性能且无铅暴露的环境风险而在室内光伏领域备受关注。然而,THP在控制其快速结晶过程中面临挑战。在此,我们引入了一种新方法,通过形成6H中间相来精确控制FASnIBr钙钛矿的结晶动力学,这一过程由钙钛矿前驱体中4-氨基吡啶盐酸盐(4APCl)的中介(+M)相互作用效应所支持。掠入射广角X射线散射测量表明,在结晶过程中,FASnIBr-4APCl钙钛矿形成了6H中间相。旋涂和退火过程中的原位紫外-可见吸收光谱证实,6H中间相形成后晶体生长速率降低。因此,获得了缺陷减少的高质量钙钛矿薄膜。所得的室内光伏器件在1000勒克斯的室内光照下效率达到21.55%,超过了所有类型的无铅钙钛矿室内光伏器件。