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Fabrication of fast mid-infrared range photodetector based on hybrid graphene-PbSe nanorods

机译:基于杂化石墨烯-PbSe纳米棒的快速中红外光电探测器的制备

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摘要

Weak light absorption of graphene has limited the responsivity of graphene-based photodetectors. On the other hand, the slow response of PbSe as a mid-infrared range (MIR) detector makes this type of detector unsuitable as a commercial detector. Here, we report a fast MIR detector based on hybrid graphene-PbSe nanorods. For this purpose, a few-layer graphene piece was synthesized using a simple, scalable, and economical method on a cobalt layer, the synthesized graphene was transferred onto interdigitated copper electrodes, and then synthesized nanorods were spin coated on the transferred graphene. Strong and tunable light absorption in the quantum dot layer creates electric charges, which are transferred to the graphene, and due to the high charge mobility of graphene and long trapped-charge lifetimes in the quantum dot layer, they recirculate many times. The fabricated device has high speed and responsivity. The gain of fabricated detectors based on hybrid graphene quantum dots is 10.3 times more, their response time is 14.3 times faster, and their responsivity is 10 times more than conventional nanorod-based detectors. From the point of view of spectral selectivity, tuning the size of the nanorods helps optical detection from the IR to mid-IR. (C) 2015 Optical Society of America
机译:石墨烯的弱光吸收限制了基于石墨烯的光电探测器的响应能力。另一方面,PbSe作为中红外范围(MIR)检测器的响应较慢,使得这种类型的检测器不适合用作商用检测器。在这里,我们报告基于混合石墨烯-PbSe纳米棒的快速MIR检测器。为此,使用简单,可扩展且经济的方法在钴层上合成了几层石墨烯片,将合成的石墨烯转移到叉指式铜电极上,然后将合成的纳米棒旋涂在转移的石墨烯上。量子点层中强大且可调的光吸收会产生电荷,这些电荷会转移到石墨烯上,由于石墨烯的高电荷迁移率和量子点层中的长捕获电荷寿命,它们会循环多次。所制造的装置具有高速度和响应性。与传统的基于纳米棒的探测器相比,基于混合石墨烯量子点的人造探测器的增益高出10.3倍,它们的响应时间快了14.3倍,其响应速度也高出10倍。从光谱选择性的角度来看,调整纳米棒的尺寸有助于从红外到中红外的光学检测。 (C)2015年美国眼镜学会

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