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首页> 外文期刊>Journal of physical chemistry letters >Extremely Slow Photoconductivity Response of CH3NH3PbI3 Perovskites Suggesting Structural Changes under Working Conditions
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Extremely Slow Photoconductivity Response of CH3NH3PbI3 Perovskites Suggesting Structural Changes under Working Conditions

机译:CH3NH3PbI3钙钛矿的极慢光电导响应,表明工作条件下的结构变化

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摘要

Photoconductivity measurements of CH3NH3PbI3 deposited between two dielectric-protected Au electrodes show extremely slow response. The CH3NH3PbI3, bridging a gap of ~2000 nm, was subjected to a DC bias and cycles of 5 min illumination and varying dark duration. The approach to steady -state photocurrent lasted tens of seconds with a strong dependence on the dark duration preceding the illumination. On the basis of DFT calculations, we propose that under light + bias the methylammonium ions are freed to rotate and align along the electric field, thus modifying the structure of the inorganic scaffold. While ions alignment is expected to be fast, the adjustment of the inorganic scaffold seems to last seconds as reflected in the extremely slow photo- conductivity response. We propose that under working conditions a modified, photostable, perovskite structure is formed, depending on the bias and illumination parameters. Our findings seem to clarify the origin of the well-known hysteresis in perovskite solar cells.
机译:沉积在两个介电保护的Au电极之间的CH3NH3PbI3的光电导测量显示出非常慢的响应。 CH3NH3PbI3,弥合〜2000 nm的差距,受到直流偏置和5分钟的照明周期和变化的暗持续时间。稳态光电流的方法持续了数十秒,并且强烈依赖于照明之前的黑暗持续时间。根据DFT计算,我们建议在轻度+偏压下,甲基铵离子可以自由旋转并沿电场排列,从而改变了无机支架的结构。尽管预计离子排列很快,但无机支架的调节似乎持续了几秒钟,这反映在极慢的光导响应中。我们建议,在工作条件下,根据偏置和照明参数,会形成一种经过修改的,耐光的钙钛矿结构。我们的发现似乎澄清了钙钛矿太阳能电池中众所周知的磁滞现象的起源。

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