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Bulk and contact-sensitized photocarrier generation in single layer organic devices

机译:在单层有机器件中产生体积和接触敏化的光载流子

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摘要

In this paper, we report on the photoelectronic properties of N,N-'-diphenyl-N,N-'-bis(3-methylphenyl)-(1,1(')-biphenyl)-4,4(')-diamine (TPD) studied in sandwich geometry. In particular, we have obtained from both forward and reverse bias measurements the mu tau product for holes in TPD. mu is the hole mobility and tau is the carrier trapping time. The mu tau product is a measure of the electronic quality of the material and allows a quantitative comparison of different samples. We have carried out numerical simulations to understand the photocurrent in these structures. We show that in reverse bias, the photocurrent (PC) is due to carrier generation in the bulk of the sample. The carrier generation is governed by field assisted exciton dissociation at electric fields greater than 10(6) V/cm. At lower fields the generation of carriers occurs spontaneously in the bulk of the sample. In forward bias, the photocurrent is due to exciton dissociation at the indium tin oxide contact. We also obtain a mu tau product for holes from forward bias PC measurements which is in agreement with the value obtained from reverse bias measurements. Based on our experiments, we demonstrate that TPD in a sandwich structure is a good candidate for cheap large area visible blind ultraviolet detector arrays. (c) 2006 American Institute of Physics.
机译:在本文中,我们报告了N,N -'-二苯基-N,N -'-双(3-甲基苯基)-(1,1(')-联苯)-4,4(')-的光电特性二胺(TPD)在夹心几何中研究。特别是,我们从正向和反向偏置测量中都获得了TPD中孔的互积。 mu是空穴迁移率,tau是载流子捕获时间。互感器产品可以衡量材料的电子质量,并可以对不同样品进行定量比较。我们进行了数值模拟,以了解这些结构中的光电流。我们表明,在反向偏置下,光电流(PC)是由于大部分样品中载流子的产生。载流子的产生由电场辅助的激子离解在大于10(6)V / cm的电场下控制。在较低的视野中,载流子的生成在样品的大部分中自发发生。在正向偏压中,光电流归因于铟锡氧化物接触处的激子解离。我们还从正向偏置PC测量中获得了用于孔的mutau乘积,该乘积与从反向偏置测量中获得的值一致。根据我们的实验,我们证明三明治结构中的TPD是便宜的大面积可见盲紫外探测器阵列的不错选择。 (c)2006年美国物理研究所。

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