论文标题
阳离子CH3NH3PBI3取向对歧义性,开路电压和激子寿命的影响
Effect of Orientation of Cation CH3NH3PbI3 on Ambipolarity, Open-Circuit Voltage, and Excitons Lifetime
论文作者
论文摘要
使用密度功能理论研究了阳离子MA(即CH3NH3)方向对MAPBI3物理特性的影响。我们报告说,费米能水平表现出很大的变化,而正是这种材料使这种材料独特,并且与非有机性钙钛矿的不同。提议随着MA的方向的费用变化,是指实验观察到的固有的开路电压V_OC,Ambiallity和Exciton的长寿命。基于我们的结果,建议在高温四个分子的低温正交相或MA分子簇中不旋转(例如,由于杂质和/或缺损)在高温四方和立方相中的杂质和/或缺陷的结果是为了负责冲动歧义。这是因为任何给定的两个相邻域或平均方向不同的群集可能具有非常不同的费米水平,从而导致它们作为有效二极管的行为。同样,MAPBI3中测量的激子的显着寿命也可以使用这种有效二极管发现了自然的解释。因此,我们的工作提供了一种统一的方式,可以从旋转引起的费米水平变化方面至少解释这三个重要特性。我们使用密度功能理论来获得结果。
The effect of the orientation of the cation MA (i.e., CH3NH3) on the physical properties of MAPbI3 are investigated using the density functional theory. We report that the Fermi energy level exhibits a large variation with MA orientation, and it is this Fermi level variation that makes this material unique and so different from the non-organic perovskites. The Fermi level variation with orientation of MA is proposed to be responsible for the experimentally observed intrinsic open-circuit voltage V_OC, ambipolarity, and long lifetime of the excitons. Based on our results, ferroelectric domains in the low-temperature orthorhombic phase or clusters of MA molecules not rotating in unison (as a consequence of e.g. impurities and/or defects) in the higher-temperature tetragonal and cubic phases are proposed to be responsible for ambipolarity. This is because any given two adjacent domains or clusters with different MA s average orientations may have very different Fermi levels, causing them to behave as an effective diode. Also, the measured significant lifetime of excitons in MAPbI3 finds a natural explanation using this effective diode. Thus, our work provides a unified manner for explaining at least these three important properties in terms of the rotation-induced Fermi level variations. We used the density functional theory to get our results.