论文标题
前体化学计量学对MAPBBR3光伏设备的性能和稳定性的影响
Effect of Precursor Stoichiometry on the Performance and Stability of MAPbBr3 Photovoltaic Devices
论文作者
论文摘要
宽带间隙甲基铵铅溴化物钙钛矿有望在串联太阳能电池和发光二极管中应用。尽管有效用,但对其可重复性和稳定性的理解只有有限的理解。在此,详细检查了薄膜和设备对薄膜和设备的属性,性能和架子存储的依赖性。尽管基于这些溶液变化的光伏细胞表现出相似的初始性能,但架子存储在很大程度上取决于前体溶液化学计量。尽管所有设备均表现出一定程度的愈合,但缺乏溴化物的膜显示出显着的改进,其光转换效率增加了一倍以上。在不同大气下进行的光致发光光谱实验表明,这种增加部分是由于陷阱愈合机制在暴露于环境时发生的。我们的结果强调了理解和操纵卤化物钙钛矿中缺陷以产生持久,稳定的设备的重要性。
The wide band gap methylammonium lead bromide perovskite is promising for applications in tandem solar cells and light-emitting diodes. Despite its utility, there is only a limited understanding of its reproducibility and stability. Herein, the dependence of the properties, performance, and shelf storage of thin films and devices on minute changes to the precursor solution stoichiometry is examined in detail. Although photovoltaic cells based on these solution changes exhibit similar initial performance, the shelf-storage depends strongly on the precursor solution stoichiometry. While all devices exhibit some degree of healing, the bromide-deficient films show a remarkable improvement, more than doubling in their photoconversion efficiency. Photoluminescence spectroscopy experiments performed under different atmospheres suggest that this increase is due in part to a trap healing mechanism that occurs upon exposure to the environment. Our results highlight the importance of understanding and manipulating defects in lead halide perovskites to produce long-lasting, stable devices.