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Cathodic-controlled and near-infrared organic upconverter for local blood vessels mapping

机译:阴极控制和近红外有机上变频器用于局部血管测绘

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摘要

Organic materials are used in novel optoelectronic devices because of the ease and high compatibility of their fabrication processes. Here, we demonstrate a low-driving-voltage cathodic-controlled organic upconverter with a mapping application that converts near-infrared images to produce images of visible blood vessels. The proposed upconverter has a multilayer structure consisting of a photosensitive charge-generation layer (CGL) and a phosphorescent organic light-emitting diode (OLED) for producing clear images with a high resolution of 600 dots per inch. In this study, temperature-dependent electrical characterization was performed to analyze the interfacial modification of the cathodic-controlled upconverter. The result shows that the upconverter demonstrated a high conversion efficiency of 3.46% because of reduction in the injection barrier height at the interface between the CGL and the OLED.
机译:有机材料由于其制造过程的简便性和高度兼容性而用于新型光电器件中。在这里,我们演示了一个低驱动电压阴极控制的有机上变频器,该产品具有将近红外图像转换为可见血管图像的制图应用程序。提出的上变频器具有由光敏电荷产生层(CGL)和磷光有机发光二极管(OLED)组成的多层结构,用于产生每英寸600点的高分辨率的清晰图像。在这项研究中,进行了与温度有关的电特性分析,以分析阴极控制的上变频器的界面变化。结果表明,由于降低了CGL和OLED之间的界面的注入势垒高度,上变频器表现出3.46%的高转换效率。

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