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首页> 外文期刊>Scientific reports. >Cathodic-controlled and near-infrared organic upconverter for local blood vessels mapping
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Cathodic-controlled and near-infrared organic upconverter for local blood vessels mapping

机译:用于当地血管映射的阴极控制和近红外有机上旋流器

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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:有机材料用于新颖的光电器件,因为它们的制造过程的易于和高相容性。这里,我们展示了一种低驱动电压阴极控制的有机上变频器,其具有映射应用程序,其转换近红外图像以产生可见血管的图像。所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,用于产生具有高分辨率每英寸600点的清晰图像。在该研究中,进行温度依赖的电学表征以分析阴极控制的上变频器的界面改性。结果表明,上变频器由于CGL和OLED之间的界面处的注入阻挡高度还原,高转换效率为3.46%。

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