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首页> 外文期刊>Journal of Imaging Science and Technology >New Model of Charge Generation and Latent Image Degradation in Single Layer Organic Photoconductor
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New Model of Charge Generation and Latent Image Degradation in Single Layer Organic Photoconductor

机译:单层有机光电导体中电荷产生和潜像降解的新模型

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摘要

A new model of charge generation process in the single layer organic photoconductor (OPC) was proposed where the charge generation tooK place at the surface of the photoconductive layer after phonon diffusion from within the photoexcited bulk photoconductive layer. The degradation of the edge sharpness of the electrostatic latent image was simulated theoretically according to this model and the parameters that dominated the resolution degradation in the single layer OPC due to the energy diffusion were determined. The analytical result suggested the model of edge degradation in this system depended strongly on the phonon diffusion length. Accordingly, an experimental analysis was performed that explained the dependence of diffusion length on the photoreceptor formulation. The experimental result showed the validity of the principle in the proposed model for all OPC formulations tested, and the existence of a significant dependence of diffusion length on the CGM concentration in the photosensitive layer. The obtained results numerically showed the superiority in resolution of the single layer OPC compared with those of the conventional dual layer OPC, suggesting the possibility of true 2400 dpi imaging. The results provided a guideline for realizing higher resolution imaging via the single layer OPC formulation.
机译:提出了一种新的单层有机光电导体(OPC)中电荷产生过程的模型,其中在声子从光激发的本体光电导层内部扩散之后,电荷产生太K放置在光电导层的表面。根据该模型从理论上模拟了静电潜像边缘清晰度的下降,并确定了由于能量扩散而导致单层OPC分辨率下降的因素。分析结果表明,该系统中边缘退化的模型在很大程度上取决于声子的扩散长度。因此,进行了实验分析,解释了扩散长度对感光体配方的依赖性。实验结果表明,所提出的模型中的原理对于所有测试的OPC配方都是有效的,并且扩散长度对光敏层中CGM浓度的依赖性很大。所获得的结果在数值上显示了单层OPC的分辨率优于常规双层OPC的分辨率,这表明了进行真正2400 dpi成像的可能性。结果为通过单层OPC配方实现更高分辨率的成像提供了指导。

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