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Chiral Excitonic Organic Photodiodes for Direct Detection of Circular Polarized Light

机译:用于圆偏振光直接检测的手性激子有机光电二极管

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摘要

A facile route to soft matter self-powered bulk heterojunction photodiode detectors sensitive to the circular polarization state of light is shown based on the intrinsic excitonic circular dichroism of the photoactive layer blend. As light detecting materials, enantiopure semiconducting small molecular squaraine derivates of opposite handedness are employed. Via Mueller matrix ellipsometry, the circular dichroism is proven to be of H-type excitonic nature and not originating from mesoscopic structural ordering. Within the green spectral range, the photodiodes convert circular polarized light into a handedness-dependent photocurrent with a maximum dissymmetry factor of +/- 0.1 corresponding to 5% overall efficiency for the polarization discrimination under short circuit conditions. On the basis of transfer matrix optical simulations, it is rationalized that the optical dissymmetry fully translates into a photocurrent dissymmetry for ease of device design. Thereby, the photodiode's ability to efficiently distinguish between left and right circularly polarized light without the use of external optical elements and voltage bias is demonstrated. This allows a straightforward and sustainable future design of flexible, lightweight, and compact integrated platforms for chiroptical imaging and sensing.
机译:基于光敏层共混物的固有激子圆二色性,显示了一种对光的圆偏振态敏感的软物质自供电本体异质结光电二极管检测器的简便途径。作为光检测材料,使用了反手性的对映体纯的半导体小分子方酸衍生物。通过Mueller矩阵椭圆偏振法,证明了圆二色性具有H型激子性质,而不是由介观结构有序产生的。在绿色光谱范围内,光电二极管将圆偏振光转换为与手性相关的光电流,最大不对称系数为+/- 0.1,对应于短路条件下极化鉴别的总效率为5%。根据传输矩阵光学模拟,可以合理地认为,光学不对称完全转化为光电流不对称,从而简化了器件设计。从而,证明了光电二极管在不使用外部光学元件和电压偏置的情况下有效区分左右圆偏振光的能力。这使得灵活,轻便和紧凑的集成平台可用于脊骨科成像和传感的直接,可持续的未来设计。

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