Photovoltaic Materials Group, Center for Green Research on Energy and Environmental Materials, National Institute for Materials Science, Tsukuba, Ibaraki, 305-0047, Japan.
International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Tsukuba, Ibaraki, 305-0044, Japan.
Adv Mater. 2019 Oct;31(42):e1903721. doi: 10.1002/adma.201903721. Epub 2019 Sep 8.
Tin-based perovskites with narrow bandgaps and high charge-carrier mobilities are promising candidates for the preparation of efficient lead-free perovskite solar cells (PSCs). However, the crystalline rate of tin-based perovskites is much faster, leading to abundant trap states and much lower open-circuit voltage (V ). Here, hydrogen bonding is introduced to retard the crystalline rate of the FASnI perovskite. By adding poly(vinyl alcohol) (PVA), the OH…I hydrogen bonding interactions between PVA and FASnI have the effects of introducing nucleation sites, slowing down the crystal growth, directing the crystal orientation, reducing the trap states, and suppressing the migration of the iodide ions. In the presence of the PVA additive, the FASnI -PVA PSCs attain higher power conversion efficiency of 8.9% under a reverse scan with significantly improved V from 0.55 to 0.63 V, which is one of the highest V values for FASnI -based PSCs. More importantly, the FASnI -PVA PSCs exhibit striking long-term stability, with no decay in efficiency after 400 h of operation at the maximum power point. This approach, which makes use of the OH…I hydrogen bonding interactions between PVA and FASnI , is generally applicable for improving the efficiency and stability of the FASnI -based PSCs.
具有较窄带隙和较高电荷迁移率的锡基钙钛矿是制备高效无铅钙钛矿太阳能电池(PSC)的有前途的候选材料。然而,锡基钙钛矿的结晶速率要快得多,导致陷阱态丰富,开路电压(V )降低。在这里,引入氢键来减缓 FASnI 钙钛矿的结晶速率。通过添加聚乙烯醇(PVA),PVA 和 FASnI 之间的 OH…I 氢键相互作用具有引入成核位点、减缓晶体生长、定向晶体取向、减少陷阱态和抑制碘化物离子迁移的作用。在 PVA 添加剂的存在下,FASnI-PVA PSC 在反向扫描下获得了 8.9%的更高功率转换效率,V 从 0.55 显著提高到 0.63V,这是基于 FASnI 的 PSC 中最高的 V 值之一。更重要的是,FASnI-PVA PSC 表现出显著的长期稳定性,在最大功率点运行 400 小时后效率没有衰减。这种利用 PVA 和 FASnI 之间的 OH…I 氢键相互作用的方法通常适用于提高 FASnI 基 PSC 的效率和稳定性。