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Interpretation of capacitance spectra and transit times of single carrier space-charge limited transport in organic layers with field-dependent mobility

机译:场依赖迁移率的有机层中单载流子空间电荷受限传输的电容谱和传输时间的解释

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摘要

The ac impedance characteristics of a single carrier with space-charge limited current (SCLC) transport in organic layers with field-dependent mobility is analyzed, indicating the similarities as well as the differences to the constant mobility case. The model provides capacitance spectra and transit times from different calculation methods, in relation to the electric field distribution in the SCLC regime. It is found that the low frequency capacitance lies in the range 3C_g/4 < C_(lf) < C_g, with respect to the geometric capacitance C_g. An approximated expression for the variation of the transit time with applied bias is derived, in good agreement with exact calculations. Experimental results of capacitance spectra of hole-only PPV devices indicate the validity of the SCLC model but also show a strong contribution of trapping at low frequencies that overlap the low-frequency value of the SCLC capacitance.
机译:分析了具有电场依赖迁移率的有机层中具有空间电荷限制电流(SCLC)传输的单载流子的交流阻抗特性,表明了与恒定迁移率情况的相似之处和不同之处。该模型根据SCLC方案中的电场分布,提供了来自不同计算方法的电容谱和传输时间。相对于几何电容C_g,发现低频电容在3C_g / 4 <C_(lf)<C_g的范围内。推导了过渡时间随施加的偏差而变化的近似表达式,与精确计算非常吻合。仅空穴的PPV器件的电容谱的实验结果表明了SCLC模型的有效性,但也显示出在与SCLC电容的低频值重叠的低频陷获的重要贡献。

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