Chapagain Sashil, Armstrong Peter J, Panta Rojita, Acharya Narayan, Druffel Thad, Grapperhaus Craig A
Department of Chemistry, University of Louisville, Louisville, KY 40292, USA.
Conn Center for Renewable Energy Research, University of Louisville, Louisville, KY 40292, USA.
iScience. 2024 Sep 16;27(10):110964. doi: 10.1016/j.isci.2024.110964. eCollection 2024 Oct 18.
Tin oxide (SnO) is an attractive electron transport material (ETM) for perovskite solar cells (PSCs) due to its optoelectronic properties, low-temperature solution processability, cost, and stability. However, solvent incompatibilities have largely limited its application to devices with SnO deposited below the perovskite. To expand its utility in other device structures, including inverted PSCs and tandem devices, alternate deposition strategies are needed. This study addresses the solvent scope and perovskite compatibility of acetate-stabilized yttrium-doped SnO (Y:SnO) dispersions. We show that dispersions in several lower alcohols and select polar aprotic solvents can be directly deposited on perovskite using scalable and low-temperature processes. Further, they are compatible with various perovskite formulations, including those with mixed cations and mixed anions. The study expands the applicability of SnO as a solution-processible and cost-effective ETM as an alternative to fullerene-based organic ETMs and serves as a guide for its use in PSCs and tandem devices.
氧化锡(SnO)因其光电特性、低温溶液可加工性、成本和稳定性,是一种用于钙钛矿太阳能电池(PSC)的有吸引力的电子传输材料(ETM)。然而,溶剂不相容性在很大程度上限制了其在钙钛矿下方沉积SnO的器件中的应用。为了扩大其在包括倒置PSC和串联器件在内的其他器件结构中的效用,需要替代沉积策略。本研究探讨了醋酸盐稳定的钇掺杂SnO(Y:SnO)分散体的溶剂范围和与钙钛矿的兼容性。我们表明,几种低级醇和选定的极性非质子溶剂中的分散体可以使用可扩展的低温工艺直接沉积在钙钛矿上。此外,它们与各种钙钛矿配方兼容,包括那些具有混合阳离子和混合阴离子的配方。该研究扩大了SnO作为一种可溶液加工且具有成本效益的ETM的适用性,可替代基于富勒烯的有机ETM,并为其在PSC和串联器件中的使用提供了指导。