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Hierarchical CdS Nanowires Based Rigid and Flexible Photodetectors with Ultrahigh Sensitivity

机译:基于分层CdS纳米线的刚性和柔性光电探测器,具有超高灵敏度

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摘要

Hierarchical CdS nanowires were synthesized via a facile vapor transport method, which were used to fabricate both rigid and flexible visible-light photodetectors. Studies found that the rigid photodetectors on SiO2/Si substrate showed ultrahigh photo-dark current ratio up to 1.96 x 10(4), several orders of magnitude higher than previously reported CdS nanostructures, as well as high specific detectivity (4.27 x 10(12) Jones), fast response speed and excellent environmental stability. Highly flexible photo detectors were also fabricated on polyimide substrate, which exhibited comparable photoresponse performance as the rigid one. In addition, the as-prepared flexible devices displayed excellent mechanical flexibility, electrical stability and folding endurance. The results indicate that the hierarchical CdS nanowires may be good candidates for nanoscale optoelectronic devices such as high-efficiency photoswitches and highly photosensitive detectors.
机译:通过简便的蒸汽传输方法合成了CdS纳米线,用于制造刚性和柔性可见光探测器。研究发现,SiO2 / Si基板上的刚性光电探测器显示出高达1.96 x 10(4)的超高光暗电流比,比以前报道的CdS纳米结构高几个数量级,并且具有高比检测率(4.27 x 10(12) )琼斯),响应速度快和出色的环境稳定性。还在聚酰亚胺基板上制造了高度柔性的光电探测器,该光电探测器表现出与刚性探测器相当的光响应性能。另外,所制备的柔性装置显示出优异的机械柔韧性,电稳定性和耐折性。结果表明,分层的CdS纳米线可能是纳米光电器件(如高效光电开关和高感光度检测器)的良好候选者。

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