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Conductivity, charge carrier mobility and ageing of ZnPc/C60 solar cells

机译:ZnPc / C60太阳能电池的电导率,载流子迁移率和老化

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We have investigated conductivity and ageing of ZnPc/C60 solar cells as they are influenced by the charge carrier mobility and variation of the potential barrier height. The test structures with a reasonable energy conversion efficiency of ~1.5% were investigated. The samples were aged for 1300 h upon illumination by the blue LED with peak emission at 475 nm. Upon ageing the devices showed a strong and fast degrada tion of the efficiency, short circuit current and of the fill factor within several hours followed by a much slower decrease of them. The reference samples kept in the dark at the room temperature did show only very small changes in their I-V curves. Carrier mobility dependencies on electric field strength at different temperatures were measured by the Charge Extraction by Linearly Increasing Voltage (CEUV) method. It was demonstrated that mobility values decrease during degradation as compared to the reference sam ples. Nevertheless only mobility changes cannot explain the observed drop of device current. The increase of the effective barrier height by about 0.1 eV from~0.55 eV up to ~0.65 eV was observed in the aged samples. Meanwhile thermal activation energy values of the electrical conductivity grew from about 0.28 eV prior to degradation up to about 0.34 eV after ageing.
机译:我们已经研究了ZnPc / C60太阳能电池的电导率和老化,因为它们受到电荷载流子迁移率和势垒高度变化的影响。研究了合理能量转换效率约为1.5%的测试结构。样品在蓝色LED照射下老化1300 h,峰值发射在475 nm。老化后,器件会在数小时内迅速,高效地降低效率,短路电流和填充系数,然后缓慢降低。室温下保持黑暗的参考样品的I-V曲线仅显示很小的变化。载流子迁移率对不同温度下电场强度的依赖性通过线性增加电压电荷提取(CEUV)方法测量。已证明与参考样品相比,在降解过程中迁移率值降低。然而,仅迁移率变化不能解释观察到的器件电流下降。在老化的样品中,观察到有效势垒高度从〜0.55 eV增加到〜0.65 eV约0.1 eV。同时,电导率的热活化能值从降解前的约0.28 eV增长到老化后的约0.34 eV。

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