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Direct X-ray photoconversion in flexible organic thin film devices operated below 1 V

机译:在低于1 V的柔性有机薄膜器件中进行直接X射线光转换

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摘要

The application of organic electronic materials for the detection of ionizing radiations is very appealing thanks to their mechanical flexibility, low-cost and simple processing in comparison to their inorganic counterpart. In this work we investigate the direct X-ray photoconversion process in organic thin film photoconductors. The devices are realized by drop casting solution-processed bis-(triisopropylsilylethynyl)pentacene (TIPS-pentacene) onto flexible plastic substrates patterned with metal electrodes; they exhibit a strong sensitivity to X-rays despite the low X-ray photon absorption typical of low-Z organic materials. We propose a model, based on the accumulation of photogenerated charges and photoconductive gain, able to describe the magnitude as well as the dynamics of the X-ray-induced photocurrent. This finding allows us to fabricate and test a flexible 2 × 2 pixelated X-ray detector operating at 0.2 V, with gain and sensitivity up to 4.7 × 104 and 77,000 nC mGy−1 cm−3, respectively.
机译:由于有机电子材料的机械柔韧性,低成本和与无机同类材料相比的简单处理,其在电离辐射检测中的应用非常吸引人。在这项工作中,我们研究了有机薄膜光电导体中的直接X射线光电转换过程。通过将溶液处理的双-(三异丙基甲硅烷基乙炔基)并五苯(TIPS-并五苯)滴铸到带有金属电极的柔性塑料基板上,可以实现这些装置。尽管低Z有机材料通常具有低X射线光子吸收能力,但它们对X射线仍具有很强的敏感性。我们基于光生电荷和光导增益的累积提出了一个模型,该模型能够描述X射线诱导的光电流的大小和动力学。这一发现使我们能够制造和测试工作在0.2 V的2×2像素化柔性X射线探测器,其增益和灵敏度分别高达4.7×10 4 和77,000 nC mGy -1 < / sup> cm -3

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