首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >J-V characteristics of dark and illuminated classical and inverted organic solar cells based on the CuPc/C_(60) heterojunction
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J-V characteristics of dark and illuminated classical and inverted organic solar cells based on the CuPc/C_(60) heterojunction

机译:基于CuPc / C_(60)异质结的黑暗和照明经典和反向有机太阳能电池的J-V特性

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A comparison of the performances of classical and inverted organic solar cells based on the junction copper phthalocyanine/fullerene (CuPc/C _(60)) shows that the former devices give the best efficiency. The transport properties of charge carriers in the organic material and the interface properties have been investigated using a mathematical simulation taking into account the effect of bulk and interface properties. Good agreement between experimental and calculated values can be achieved using different parameter values following the type of solar cells. In classical solar cells, the current is space charge limited, while there is no barrier at the contact electrode/organic material. In the case of inverted solar cells it is necessary to introduce a barrier contact at these interfaces to achieve a good fit between experimental and theoretical values. Therefore, the lower efficiency of the inverted solar cells is due to the barrier contact at the interface and smaller electrode work function difference.
机译:比较传统和基于结铜酞菁/富勒烯(CuPc / C _(60))的有机有机太阳能电池的性能,结果表明,前者的器件效率最高。考虑到体积和界面性质的影响,使用数学模拟研究了有机材料中载流子的传输性质和界面性质。根据太阳能电池的类型,使用不同的参数值可以实现实验值和计算值之间的良好一致性。在经典的太阳能电池中,电流受到空间电荷的限制,而在接触电极/有机材料上没有势垒。在倒置太阳能电池的情况下,有必要在这些界面处引入势垒接触,以实现实验值和理论值之间的良好拟合。因此,倒装太阳能电池的效率较低是由于界面处的势垒接触和较小的电极功函数差。

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