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Lead Iodide Microcrystals in Carbon Composite Matrix for Low Power Photodetectors

机译:用于低功率光电探测器的碳复合基质中的碘化铅微晶

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摘要

Lead iodide (PbI2) microcrystals based photodetector were developed by a simple printing method. Carbon composite paste was fabricated by homogeneous mixing of PbI2 microcrystals, commercial graphite powder, and activated carbon. Composite carbon paste was printed on top of thermally deposited Al electrodes on the glass substrates to fabricate the photodetector. Controlled variation of PbI2 loading established that 10 PbI2 in carbon composite is the best candidate for the highest On/Off ratio. The photo generated current was manifested by the defect present in the graphite and the PbI2 microcrystals interfaces. The effect enables us to develop cost effective printing based photodetector which can work in very low voltage region for low-power printed electronics.
机译:碘化铅(PbI2)微晶基光电探测器是通过简单的印刷方法开发的。将PbI2微晶、商业石墨粉和活性炭均匀混合制备了碳复合浆料。将复合碳浆印刷在玻璃基板上热沉积的铝电极上,以制造光电探测器。PbI2负载的受控变化表明,碳复合材料中10%的PbI2是最高开/关比的最佳候选者。光生成电流表现为石墨和 PbI2 微晶界面中存在的缺陷。这种效应使我们能够开发具有成本效益的基于印刷的光电探测器,该光电探测器可以在非常低的电压区域工作,用于低功耗印刷电子产品。

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