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首页> 外文期刊>Journal of Applied Physics >Influence Of Chromophore Content On The Steady-state Space Charge Formation Of Poly[methyl-3-(9-carbazolyl) Propylsiloxane]-based Polymeric Photorefractive Composites
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Influence Of Chromophore Content On The Steady-state Space Charge Formation Of Poly[methyl-3-(9-carbazolyl) Propylsiloxane]-based Polymeric Photorefractive Composites

机译:发色团含量对聚[甲基-3-(9-咔唑基)丙基硅氧烷]基聚合物光折变复合材料稳态空间电荷形成的影响

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We investigate the influence of chromophore content on the steady-state space charge formation. The chromophore is expected to act as a trap for hole transport in the matrix when the chromophore has a lower ionization potential as compared with the hole transporting material. We measured the photoconductivity and space charge field and then discussed their chromophore content dependence. At low chromophore concentrations, the photoconductivity decreased with increasing chromophore content due to the trap effect of chromophore. Above 3 wt % of chromophore concentration, however, the photoconductivity increased with the chromophore content through the increment of hole detrapping and the decrement of electron-hole recombination. The space charge field, which is dependent on the mobile hole and trap densities, increased with the chromophore content and saturated at about 15 wt % of chromophore. Numerical simulation work, the modified Schildkraut differential equation, was used to help us understand the experimental results. All experimental results are in excellent agreement with the simulation predictions.
机译:我们研究了发色团含量对稳态空间电荷形成的影响。当发色团具有比空穴传输材料低的电离电势时,发色团有望充当基质中空穴传输的陷阱。我们测量了光电导率和空间电荷场,然后讨论了它们的发色团含量依赖性。在低生色团浓度下,由于生色团的捕获效应,光电导率随生色团含量的增加而降低。然而,在发色团浓度的3wt%以上时,通过空穴脱陷的增加和电子-空穴复合的减少,光电导率随着发色团含量的增加而增加。取决于可移动空穴和陷阱密度的空间电荷场随生色团含量的增加而增加,并在生色团的约15 wt%处饱和。数值模拟工作是经过修改的Schildkraut微分方程,用于帮助我们理解实验结果。所有实验结果均与模拟预测非常吻合。

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