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Reproducible, High Performance Fully Printed Photodiodes on Flexible Substrates through the Use of a Polyethylenimine Interlayer

机译:通过使用聚乙烯层间层间在柔性基板上可再现,高性能完全印刷光电二极管

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摘要

This paper investigates with a statistical analysis the issue of performance reproducibility and optimization in fully inkjet-printed organic photodetectors on flexible substrates. The most crucial process step to obtain reproducible, well performing devices with a high process yield turns out to be the printing of the thin polyethylenimine interlayer used as a surface modifier for the bottom electrode. Controlling solution composition and deposition parameters for this layer, a 57 nA cm(-2) mean reverse dark current was achieved, with an outstanding standard deviation as low as 15 nA cm(-2), with dramatic improvements in process yield (from less than 20% to over 90%). Device performance in terms of dark currents, EQE (from 50% up to 90% at 525 nm, depending on process), and rectification (ratio between forward current and reverse current over 10(4) and reaching 10(5) in the best cases) is among the best for fully printed detectors. Furthermore, the importance of relative humidity control in the deposition environment during the interlayer printing on device characteristics is reported, indicating the processing conditions optimal for scaling to mass manufacturing. The overall interlayer optimization approach was applied to a process using widely adopted materials in the organic optoelectronics field, and thus retains relevance on a broad range.
机译:本文调查了统计分析柔性衬底上完全喷墨印刷有机光电探测器的性能重现性和优化问题。获得可重复的最重要的方法步骤,具有高工序产量的可重复性良好的装置,以印刷用作底部电极的表面改性剂的薄聚乙基菊花中间层。控制该层的溶液组合物和沉积参数,实现了57Acm(-2)平均反向暗电流,具有低至15纳克(-2)的出色标准偏差,工艺产品的显着改善(从较少超过20%到超过90%)。在暗电流方面的设备性能,EQE(根据过程中5250%的50%,根据过程),并根据10(4)超过10(4)的前电流和反向电流之间的比率,并且最佳地达到10(5)案例是完全印刷的探测器中最好的。此外,报道了在沉积环境中的相对湿度控制在沉积环境期间的沉积环境期间的沉积环境,表示处理条件最佳地缩放到大规模制造。将整体中间层优化方法应用于使用有机光电子场中广泛采用材料的过程,从而保持宽范围的相关性。

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