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Enhanced Operational Stability of Perovskite Light-Emitting Electrochemical Cells Leveraging Ionic Additives

机译:利用离子添加剂的钙钛矿发光电化学电化学电化学细胞增强的操作稳定性

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Hybrid perovskites are emerging as highly efficient materials for optoelectronic applications, however, their operational lifetime has remained a limiting factor for their continued progress. In this work, perovskite light emitting electrochemical cells utilizing an optimized fraction of lithium hexafluorophosphate (LiPF6) salt additive exhibit enhanced stability. At 0.5 wt% LiPF6, devices exhibit 100 h operation at high brightness in excess of 800 cd m(-2) under constant current driving, achieving a maximum luminance of 3260 cd m(-2) and power efficiency of 9.1 Lm W-1. This performance extrapolates to a 6700 h luminance half-life from 100 cd m(-2), a 5.6-fold improvement over devices with no LiPF6. Analysis under constant voltage driving reveals three current regimes, with lithium addition strongly enhancing current in the second and third regimes. The third regime correlates lower rates of luminance with lowered current flow. These losses are mitigated by LiPF6 addition, an effect postulated to arise from preservation of perovskite structure. Electrochemical impedance spectroscopy with equivalent circuit modeling reveals that electrical double layer widths are minimized at 0.5 wt% LiPF6 and inversely correlated with efficient performance. These results demonstrate that an optimal LiPF6 concentration improves stability and efficiency through improved double layer formation and retention of perovskite structure.
机译:Hybrid Perovskites正在出现作为光电应用的高效材料,然而,它们的操作寿命仍然是他们持续进展的限制因素。在这项工作中,利用优化的六氟磷酸锂(LiPF6)盐添加剂的钙钛矿发光电化学电池表现出增强的稳定性。在0.5wt%lipf6,在恒定电流驱动下,装置在高亮度下以超过800cd m(-2)的高亮度,实现3260cd m(-2)的最大亮度,功率为9.1 lm w-1 。这种性能从100cd m(-2)中的6700小时半衰期外推到6700小时的半衰期,在没有LIPF6的装置上的5.6倍改善。在恒定电压驾驶下的分析显示了三个电流制度,锂添加了第二和第三个制度的强烈增强电流。第三种结果将较低的亮度与电流的较低速度相关联。这些损失通过LiPF6添加减轻,其假设效果是从保存钙钛矿结构中产生的。具有等效电路建模的电化学阻抗光谱显示,电双层宽度在0.5wt%的Lipf6下最小化并与有效性能相反。这些结果表明,最佳的LiPF6浓度通过改善的双层形成和钙钛矿结构的保留来提高稳定性和效率。

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