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Flexible hybrid graphene/a-Si: H multispectral photodetectors

机译:灵活的混合的石墨烯/硅:H多光谱光电探测器

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We report on the integration of large area CVD grown single-and bilayer graphene transparent conductive electrodes (TCEs) on amorphous silicon multispectral photodetectors. The broadband transmission of graphene results in 440% enhancement of the detectors' spectral response in the ultraviolet (UV) region at lambda = 320 nm compared to reference devices with conventional aluminum doped zinc oxide (ZnO:Al) electrodes. The maximum responsivity of the multispectral photodetectors can be tuned in their wavelength from 320 nm to 510 nm by an external bias voltage, allowing single pixel detection of UV to visible light. Graphene electrodes further enable fully flexible diodes on polyimide substrates. Here, an upgrade from single to bilayer graphene boosts the maximum photoresponsivity from 134 mAW(-1) to 239 mAW(-1). Interference patterns that are present in conventional TCE devices are suppressed as a result of the atomically thin graphene electrodes. The proposed detectors may be of interest in fields of UV/VIS spectroscopy or for biomedical and life science applications, where the extension to the UV range can be essential.
机译:我们报道了大面积CVD的集成种植单一和双层石墨烯透明在非晶硅导电电极(tc)多光谱光电探测器。石墨烯的传播结果在440%增强探测器的光谱响应紫外线(UV)地区在λ= 320海里与传统相比,参考设备铝掺杂氧化锌:Al)电极。多光谱的最大响应率光电探测器可调谐波长从320纳米到510纳米由外部的偏见电压,允许单个像素检测的紫外线可见光。在聚酰亚胺基质充分灵活的二极管。在这里,升级从单一到双层石墨烯提高最大photoresponsivity从134年胃(1)到239年胃(1)。在传统TCE设备压抑的结果自动瘦石墨烯电极。感兴趣的领域的UV / VIS光谱学或生物医学和生命科学的应用,紫外线范围的扩展可以在哪里必不可少的。

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