Department of Solar & Energy Engineering, Cheongju University , Cheongju, Chungbuk 28503, Republic of Korea.
ACS Appl Mater Interfaces. 2017 Jul 12;9(27):22432-22439. doi: 10.1021/acsami.7b04011. Epub 2017 Jun 30.
Compositional engineering of recently arising methylammonium (MA) lead (Pb) halide based perovskites is an essential approach for finding better perovskite compositions to resolve still remaining issues of toxic Pb, long-term instability, etc. In this work, we carried out crystallographic, morphological, optical, and photovoltaic characterization of compositional MASnPbIBr by gradually introducing bromine (Br) into parental Pb-Sn binary perovskite (MASnPbI) to elucidate its function in Sn-rich (Sn:Pb = 6:4) perovskites. We found significant advances in crystallinity and dense coverage of the perovskite films by inserting the Br into Sn-rich perovskite lattice. Furthermore, light-intensity-dependent open circuit voltage (V) measurement revealed much suppressed trap-assisted recombination for a proper Br-added (x = 0.4) device. These contributed to attaining the unprecedented power conversion efficiency of 12.1% and V of 0.78 V, which are, to the best of our knowledge, the highest performance in the Sn-rich (≥60%) perovskite solar cells reported so far. In addition, impressive enhancement of photocurrent-output stability and little hysteresis were found, which paves the way for the development of environmentally benign (Pb reduction), stable monolithic tandem cells using the developed low band gap (1.24-1.26 eV) MASnPbIBr with suggested composition (x = 0.2-0.4).
通过逐渐在母体 Pb-Sn 二元钙钛矿(MASnPbI)中引入溴(Br),对组成变化的 MASnPbIBr 进行了晶体学、形态学、光学和光伏特性的研究,以阐明 Br 在富 Sn(Sn:Pb=6:4)钙钛矿中的作用。我们发现,通过将 Br 插入 Sn 富钙钛矿晶格中,钙钛矿薄膜的结晶度和致密覆盖率有了显著提高。此外,光强依赖的开路电压(V)测量表明,对于适当添加 Br(x=0.4)的器件,陷阱辅助复合得到了很大抑制。这些因素共同实现了前所未有的功率转换效率 12.1%和 V 为 0.78V,据我们所知,这是迄今为止报道的 Sn 富(≥60%)钙钛矿太阳能电池的最高性能。此外,还发现了光电流输出稳定性的显著提高和几乎没有滞后,这为使用开发的低带隙(1.24-1.26eV)MASnPbIBr(建议组成 x=0.2-0.4)开发环境友好(减少 Pb)、稳定的单片串联电池铺平了道路。