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首页> 外文期刊>ACS applied materials & interfaces >Transparent and Highly Responsive Phototransistors Based on a Solution-Processed, Nanometers-Thick Active Layer, Embedding a High-Mobility Electron-Transporting Polymer and a Hole-Trapping Molecule
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Transparent and Highly Responsive Phototransistors Based on a Solution-Processed, Nanometers-Thick Active Layer, Embedding a High-Mobility Electron-Transporting Polymer and a Hole-Trapping Molecule

机译:基于溶液加工的纳米厚的有源层的透明和高响应光电晶体管,嵌入高迁移率电子传输聚合物和空穴捕获分子

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摘要

Organic materials are suitable for light sensing devices showing unique features such as low cost, large area, and flexibility. Moreover, transparent photodetectors are interesting for smart interfaces, windows, and display integrated electronics. The ease of depositing ultrathin organic films with simple techniques enables low light absorbing active layers, resulting in the realization of transparent devices. Here, we demonstrate a strategy to obtain high efficiency organic photodetectors and phototransistors based on transparent active layers with a visible transmittance higher than 90%. The photoactive layer is composed of two phases, each a few nanometers thick. First, an acceptor polymer, which is a good electron transporting material, on top of which a small molecule donor material-is deposited; forming noncontinuous domains. The small molecule phase acts as a trap for holes, thus inducing a high photoconductive gain, resulting in a high photoresponsivity. The organic transparent detectors proposed here can reach very high external quantum efficiency and responsivity values, which in the case of the phototransistors can be as high as,74000% and 340 A W-1 at S70 nm respectively, despite an absorber total thickness below 10 nm. Moreover, frequency dependent 2D photocurrent mapping allows discrimination between the contribution of a fast but inefficient and highly spatially localized photoinduced injection mechanism at the electrodes, and the onset of a slower and spatially extended photoconductive process, leading to high responsivity.
机译:有机材料适用于光传感装置,显示出独特的特征,如低成本,大面积,柔韧性。此外,透明的光电探测器对于智能接口,窗口和显示集成电子设备很有趣。具有简单技术的易于沉积超薄有机薄膜的易用性,使得低光吸收有源层,导致透明装置的实现。这里,我们证明了一种基于具有高于90%的可见光透射率的透明有源层获得高效率有机光电探测器和光电晶体的策略。光活性层由两相组成,每阶段几纳米厚。首先,沉积小分子供体材料的良好电子传输材料的受体聚合物;形成非连续域。小分子相是用于孔的捕集器,从而诱导高光电导的增益,导致高光电反应性。这里提出的有机透明检测器可以达到非常高的外部量子效率和响应值,在光电晶体管的情况下,在S70nm的情况下,尽管吸收器总厚度低于10 nm。此外,频率相关的2D光电流映射允许在电极的快速但低效和高度空间局部的光导的注射机构的贡献之间的判断,以及较慢和空间延伸的光电导过程的开始,导致高响应性。

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