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Photocurrent Generation in Organic Photodetectors with Tailor-Made Active Layers Fabricated by Layer-by-Layer Deposition

机译:通过逐层沉积制造的具有定制活性层的有机光电探测器中的光电流产生

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摘要

Photodetectors supply an electric response when illuminated. The detectors in this study consist of an active layer and a polyvinylidene fluoride (PVDF) blocking layer, which are sandwiched by an aluminum and an indium tin oxide (ITO) electrode. The active layer was prepared of Zn porphyrins and assembled by covalent layer-by-layer (LbL) deposition. Layer growth was monitored by UV-vis absorbance, ellipsometry, and X-ray photoelectron spectroscopy. Upon exposure to chopped light, the detectors show an alternating transient photocurrent, which is limited by the accumulation of space charges at the blocking layer/active layer interface. We could show that the number of photoactive layers has a significant impact on device performance. The fastest response was achieved with fewer layers. The highest photocurrents were measured for detectors with an intermediate number of layers, beyond which, more layers did not lead to an increase in the photocurrent despite containing more active material.
机译:光电探测器在被照亮时会产生电响应。本研究中的检测器由一个活性层和一个聚偏二氟乙烯(PVDF)阻挡层组成,它们被铝和氧化铟锡(ITO)电极夹在中间。活性层由锌卟啉制成,并通过共价逐层(LbL)沉积进行组装。通过UV-可见光吸收,椭圆偏振法和X射线光电子能谱法监测层的生长。在暴露于切碎的光后,检测器会显示出交替的瞬态光电流,这受阻隔层/活性层界面处空间电荷的积累限制。我们可以证明光敏层的数量对设备性能有很大影响。更少的层数实现了最快的响应。对于具有中间层数的检测器,测量了最高的光电流,超过此值,尽管包含更多的活性材料,但更多的层并不会导致光电流的增加。

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