论文标题
高性能的柔性全晶壶串联串联太阳能电池,宽带子图中的VOC缺陷降低
High-Performance Flexible All-Perovskite Tandem Solar Cells with Reduced VOC-Deficit in Wide-Bandgap Subcell
论文作者
论文摘要
在各种基于钙钛矿的串联串联太阳能电池(TSC)中,All-perovskite TSC对于建筑和车辆集成的光伏或太空能量区域尤其具有吸引力,因为它们可以在具有非常高的功率重量比率的柔性和轻量级底物上制造。但是,灵活的全栖息地串联的效率远远落后于其刚性的效率,这主要是由于在柔性底物上开发有效的宽带(WBG)Perovskite太阳能电池所面临的挑战,以及WBG Perovskite subcell subcell subcell subcell subcell subcell in the flexible substres上。在这里,我们报告说,将自组装的单层用作孔选择性接触有效地抑制了界面重组,并允许具有优质光电质量的1.77 eV WBG钙钛矿的随后均匀生长。此外,我们采用2-噻吩乙基氯化铵的沉积后处理,进一步抑制了散装和界面重组,将WBG顶部细胞的VOC提高到1.29 V.,基于此,我们介绍了第一个pectioncept coption coption persife pce,呈现为22.6%的PCE。当整合到两端的柔性串联中时,我们获得了23.8%的柔性全栖息地TSC,优质VOC为2.1 V,这与在28%的全孔中串联的VOC相等,在刚性底物上生长。
Among various types of perovskite-based tandem solar cells (TSCs), all-perovskite TSCs are of particular attractiveness for building- and vehicle-integrated photovoltaics, or space energy areas as they can be fabricated on flexible and lightweight substrates with a very high power-to-weight ratio. However, the efficiency of flexible all-perovskite tandems is lagging far behind their rigid counterparts primarily due to the challenges in developing efficient wide-bandgap (WBG) perovskite solar cells on the flexible substrates as well as the low open-circuit voltage (VOC) in the WBG perovskite subcell. Here, we report that the use of self-assembled monolayers as hole-selective contact effectively suppresses the interfacial recombination and allows the subsequent uniform growth of a 1.77 eV WBG perovskite with superior optoelectronic quality. In addition, we employ a post-deposition treatment with 2-thiopheneethylammonium chloride to further suppress the bulk and interfacial recombination, boosting the VOC of the WBG top cell to 1.29 V. Based on this, we present the first proof-of-concept four-terminal all-perovskite flexible TSC with a PCE of 22.6%. When integrating into two-terminal flexible tandems, we achieved 23.8% flexible all-perovskite TSCs with a superior VOC of 2.1 V, which is on par with the VOC reported on the 28% all-perovskite tandems grown on the rigid substrate.