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Solution processed integrated pixel element for an imaging device

机译:用于成像设备的经过溶液处理的集成像素元件

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We demonstrate the implementation of a solid state circuit/structure comprising of a high performing polymer field effect transistor (PFET) utilizing an oxide layer in conjunction with a self-assembled monolayer (SAM) as the dielectric and a bulk-heterostructure based organic photodiode as a CMOS-like pixel element for an imaging sensor. Practical usage of functional organic photon detectors requires on chip components for image capture and signal transfer as in the CMOS/CCD architecture rather than simple photodiode arrays in order to increase speed and sensitivity of the sensor. The availability of high performing PFETs with low operating voltage and photodiodes with high sensitivity provides the necessary prerequisite to implement a CMOS type image sensing device structure based on organic electronic devices. Solution processing routes in organic electronics offers relatively facile procedures to integrate these components, combined with unique features of large-area, form factor and multiple optical attributes. We utilize the inherent property of a binary mixture in a blend to phase-separate vertically and create a graded junction for effective photocurrent response. The implemented design enables photocharge generation along with on chip charge to voltage conversion with performance parameters comparable to traditional counterparts. Charge integration analysis for the passive pixel element using 2D TCAD simulations is also presented to evaluate the different processes that take place in the monolithic structure.
机译:我们演示了一个固态电路/结构的实现,该电路/结构包括一个高性能的聚合物场效应晶体管(PFET),该晶体管利用氧化物层与自组装单层(SAM)作为介电层以及基于体相结构的有机光电二极管用于成像传感器的类CMOS像素元件。功能性有机光子检测器的实际使用需要像CMOS / CCD架构那样的片上组件来进行图像捕获和信号传输,而不是简单的光电二极管阵列,以提高传感器的速度和灵敏度。具有低工作电压的高性能PFET和具有高灵敏度的光电二极管的可用性为实现基于有机电子器件的CMOS型图像传感器件结构提供了必要的先决条件。有机电子产品中的溶液处理路线提供了相对容易的程序来集成这些组件,并结合了大面积,形状因数和多种光学属性的独特功能。我们利用掺混物中二元混合物的固有特性垂直相分离,并创建渐变结以实现有效的光电流响应。实施的设计可实现光电荷产生以及片上电荷到电压的转换,其性能参数可与传统同类产品相比。还提出了使用2D TCAD仿真对无源像素元素进行电荷积分分析的方法,以评估整体结构中发生的不同过程。

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