Zhang Kai, Wang Zheng, Wang Gaopeng, Wang Jian, Li Yu, Qian Wei, Zheng Shizhao, Xiao Shuang, Yang Shihe
Guangdong Provincial Key Lab of Nano-Micro Materials Research, School of Chemical Biology and Biotechnology, Shenzhen Graduate School, Peking University, Shenzhen, China.
Nat Commun. 2020 Feb 21;11(1):1006. doi: 10.1038/s41467-020-14715-0.
Humidity is known to be inimical to the halide perovskites and thus typically avoided during fabrication. The poor fundamental understanding of chemical interactions between water and the precursors hampers the further development of perovskite fabrication in ambient atmosphere. Here, we disclose a key finding that the ambient water could promote the formation of lead complexes, which when uncontrolled would make their way into large intermediate fibrillar crystallites and thus discontinuous perovskite films unfavorable for photovoltaics among others. To counter this effect, a prenucleation strategy is proposed, which embodies the controlled burst of profuse intermediate nuclei. Consequently, we are able to obtain a compact and uniform perovskite layer, which affords high efficiency perovskite solar cells. More excitingly, the solar cells show high performance uniformity, demonstrating the distinctive advantages of our prenucleation strategy. This work sheds light on developing reliable and cost-effective fabrication methods for industrial production of perovskite solar cells.
众所周知,湿度对卤化物钙钛矿有害,因此在制造过程中通常要避免。对水与前驱体之间化学相互作用的基本认识不足,阻碍了在环境大气中钙钛矿制造的进一步发展。在此,我们揭示了一个关键发现,即环境中的水会促进铅络合物的形成,若不加以控制,这些铅络合物会进入大型中间纤维状微晶,从而形成不利于光伏等应用的不连续钙钛矿薄膜。为了抵消这种影响,我们提出了一种预成核策略,该策略体现了对大量中间核的可控爆发。因此,我们能够获得致密且均匀的钙钛矿层,进而制备出高效的钙钛矿太阳能电池。更令人兴奋的是,这些太阳能电池表现出高性能的均匀性,证明了我们预成核策略的独特优势。这项工作为开发用于工业生产钙钛矿太阳能电池的可靠且经济高效的制造方法提供了思路。