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Plasmon-Assisted Direction- and Polarization-Sensitive Organic Thin-Film Detector

机译:等离子体辅助方向和偏振敏感有机薄膜探测器

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摘要

Utilizing Bragg surface plasmon polaritons (SPPs) on metal nanostructures for the use in optical devices has been intensively investigated in recent years. Here, we demonstrate the integration of nanostructured metal electrodes into an ITO-free thin film bulk heterojunction organic solar cell, by direct fabrication on a nanoimprinted substrate. The nanostructured device shows interesting optical and electrical behavior, depending on angle and polarization of incidence and the side of excitation. Remarkably, for incidence through the top electrode, a dependency on linear polarization and angle of incidence can be observed. We show that these peculiar characteristics can be attributed to the excitation of dispersive and non-dispersive Bragg SPPs on the metal–dielectric interface on the top electrode and compare it with incidence through the bottom electrode. Furthermore, the optical and electrical response can be controlled by the organic photoactive material, the nanostructures, the materials used for the electrodes and the epoxy encapsulation. Our device can be used as a detector, which generates a direct electrical readout and therefore enables the measuring of the angle of incidence of up to 60° or the linear polarization state of light, in a spectral region, which is determined by the active material. Our results could furthermore lead to novel organic Bragg SPP-based sensor for a number of applications.
机译:在近年来,利用在金属纳米结构上使用布拉格表面等离子体(SPP),在光学器件中使用了用于光学器件的金属纳米结构。这里,我们通过直接制造在纳米压印基板上,证明纳米结构金属电极的整合到自由薄膜致疱膜异质结上有机太阳能电池中。纳米结构装置显示有趣的光学和电能,取决于发生率的角度和极化和激发侧的偏振。值得注意的是,对于通过顶部电极的入射,可以观察到对线性偏振和入射角的依赖性。我们表明,这些特殊的特征可以归因于顶部电极上的金属介质界面上的分散和非分散布拉格SPP的激励,并将其与通过底部电极的入射进行比较。此外,光学和电响应可以通过有机光活性材料,纳米结构,用于电极的材料和环氧包封来控制。我们的装置可以用作检测器,其产生直接电读出,因此可以通过活性材料确定最多60°的入射角或光的线性偏振状态的光谱区域。 。我们的结果还可以导致基于新的有机布拉格SPP的传感器,用于许多应用。

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