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Self-powered broadband photodetector based on a solution-processed p-NiO/n-CdS:Al heterojunction

机译:基于解决方案处理的P-NIO / N-CDS:Al异质结的自动宽带光电探测器

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Solution-processed photodetectors have emerged as the next generation of sensing technology owing to their ease of integration with electron devices and of tuning photodetector performance. Currently, novel self-powered photodetectors without an external power source, for use in sensing, imaging and communication, are in high demand. Herein, we successfully developed a self-powered photodetector based on a novel solution-processed p-NiO/n-CdS:Al heterojunction, which shows an excellent current rectification characteristic ratio of up to three orders in the dark and distinctive photovoltaic behavior under light illumination. The complete solution synthesis route followed the development of CdS:Al thin films on ITO substrates by chemical bath deposition and NiO thin films by the sol-gel route. Optical absorption data revealed that NiO is more active in the UV region and CdS:Al has a majority of absorption in the visible region; so, upon light illumination, the effective separation of photogenerated carriers produces fast photodetection in the UV-visible region. The photoresponsivity values of the fabricated device were calculated to be 55 mA W-1 and 30 mA W-1 for UV and visible illumination, respectively. Also, the device has a fast rise and decay photoresponse speed at zero bias voltage, due to the self-driven photovoltaic effect which makes this heterojunction a self-powered device. This complete solution and new method of fabrication make it possible to combine different materials and flexible substrates, enhancing its potential applications in photodetectors, optoelectronic devices and sensors.
机译:溶液处理光电探测器因其易于与电子器件集成和调节光电探测器性能而成为下一代传感技术。目前,用于传感、成像和通信的新型无外接电源自供电光电探测器的需求量很大。在此,我们成功开发了一种基于新型溶液处理p-NiO/n-CdS:Al异质结的自供电光电探测器,该异质结在黑暗中显示了高达三个数量级的优良电流整流特性比,并在光照下表现出独特的光伏行为。全溶液合成法是在ITO衬底上用化学浴沉积法制备CdS:Al薄膜和用溶胶-凝胶法制备NiO薄膜的基础上发展起来的。光吸收数据显示,NiO在紫外区域更活跃,CdS:Al在可见光区域有大部分吸收;因此,在光照下,光生载流子的有效分离在紫外可见区域产生快速的光探测。对紫外和可见光照明,所制备器件的光响应率值分别为55毫安W-1和30毫安W-1。此外,由于自驱动光伏效应,该器件在零偏压下具有快速上升和衰减的光响应速度,这使得该异质结成为自供电器件。这种完整的解决方案和新的制造方法使不同材料和柔性基板的结合成为可能,增强了其在光电探测器、光电子器件和传感器中的潜在应用。

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