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Realization of polymeric optical integrated devices utilizing organic light-emitting diodes and photodetectors fabricated on a polymeric waveguide

机译:在聚合物波导上使用有机发光二极管和光电探测器的聚合物光学集成装置的实现

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摘要

Direct fabrication of organic light-emitting diodes (OLEDs) and organic photodetectors (OPDs) on polymeric substrates, i.e., polymeric waveguide substrates to form flexile optical integrated devices is demonstrated. The OELD and OPD were fabricated by organic molecular beam deposition (OMBD) technique on a polymeric or a glass substrate, for comparison. The device fabricated on a polymeric substrate shows similar device characteristics to that on a glass substrate. Optical signals of faster than 100 MHz have been created by applying pulsed voltage directly to the OLED utilizing diamine derivative, or rubrene or porphine doped in 8-hydoxyquinolinum aluminum derivatives, as an emissive layer. Electrical signals are successively converted to optical signals for optical transmission of moving picture signals with OLED fabricated on a polymeric waveguide. OPDs utilizing phthalocyanines derivatives with superlattice structure provide increased pulse response with input optical signals, and the OPD with the cutoff frequency of more than 5 MHz has been realized.
机译:对聚合物基材的直接制造有机发光二极管(OLED)和有机光电探测器(OPDS),即聚合物波导基板以形成柔性光学集成装置。通过在聚合物或玻璃基板上通过有机分子束沉积(OMBD)技术来制造OELD和OPD,以进行比较。在聚合物基板上制造的装置显示出与玻璃基板上的类似装置特性。通过将脉冲电压直接施加到利用二胺衍生物,或在8-羟基喹啉铝衍生物中掺杂的摩尔诺或卟啉作为发光层,通过将脉冲电压直接施加到OLED的速度超过100MHz的光信号。电信号连续地转换为用于光学信号的光学信号,用于在聚合物波导上制造的OLED的运动图像信号。利用具有超晶格结构的酞菁衍生物的OPDS提供了增加的脉冲响应与输入光信号,并且已经实现了具有超过5MHz的截止频率的OPD。

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