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Highly photoresponsive, ZnO nanorod-based photodetector for operation in the visible spectral range

机译:基于高光响应的ZnO纳米棒的光电探测器,用于在可见光谱范围内的操作

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While significant advances have been made for gold nanoparticle (AuNP)-coupled zinc oxide (ZnO) as visibly blind, ultraviolet photodetection devices, very few ZnO nanomaterial systems have been developed specifically for use in the visible wavelength regime. Further efforts to develop ZnO-based visible photodetectors (PDs) are still highly warranted in order to better understand the precise effect of AuNP load, operation wavelength, and beam position on the device output. In this study, we demonstrate significantly enhanced, photoresponse behaviors of AuNP-coupled ZnO nanorod (NR) network devices in the visible wavelength range with their photoresponse capacity comparable to, if not far exceeding, most commercial PDs as well as recently reported, visible, AuNP-coupled ZnO detectors. In addition, the nature and degree of the photoresponsivity enhancement are systematically elucidated by investigating their light-triggered electrical signals under varying incident wavelengths, AuNP amounts, and illumination positions. We discuss a possible photoconduction mechanism of our AuNP-coupled ZnO NR PDs and the origins of the high photoresponsivity. Specifically related to the AuNP amount-dependent photoresponse behaviors, the nanoparticle density yielding photoresponse maxima is explained as the interplay between localized surface plasmon resonance, plasmonic heating, and scattering in our photothermoelectric effect-driven device. We show that the AuNP-coupled ZnO NR PDs can be constructed via a straightforward method without the need for ultrahigh vacuum, sputtering procedures, or photo/electron-beam lithographic tools. Hence, the approach demonstrated in this study may serve as a convenient and viable means to advance the current state of ZnO-based PDs for operation in the visible spectral range with greatly increased photoresponsivity.
机译:虽然显著进步已经针对金粒子(AuNP) - 偶联的氧化锌(ZnO)的作为可见盲紫外光检测装置,很少的ZnO纳米材料的系统已经专门为在可见光波长范围中使用而开发。进一步努力开发基于ZnO的可见光检测器(PDS)仍然高度保证,以便更好地理解的AuNP负载,工作波长,和光束位置上的装置输出的精确作用。在这项研究中,我们表现出显著增强,金纳米粒子,加上ZnO纳米棒的光响应行为(NR)在可见光波长范围内的光响应能力的网络设备相媲美,如果不是远远超过,以及最近报道,可见大多数商业的PD,的AuNP耦合的ZnO探测器。此外,光响应增强的性质和程度是由系统在变化的入射波长调查其光触发电信号阐明,金纳米粒子数量和照射位置。我们讨论我们的金纳米粒子偶联的ZnO NR PD的可能的光电导机制和高光响应的起源。具体涉及到的AuNP量依赖性光响应行为,所述纳米颗粒密度产生光响应最大值作为局部表面等离子体共振,等离激元加热,并散射在我们photothermoelectric效应驱动装置之间的相互作用进行说明。我们表明,金纳米粒子偶联的ZnO NR PD设备可以通过一个简单的方法来构造,而不需要超高真空,溅射过程,或光/电子束光刻工具。因此,在该研究证明该方法可以作为一种方便可行的手段来推进基于ZnO的PD设备进行操作的当前状态在可见光谱范围内具有大大增加的光响应。

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