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Characterization and Electronic Properties of Heptazine Layers: Towards Promising Interfacial Materials for Organic Optoelectronics

机译:七肽层的表征及电子性质:朝向有机光电子的通用界面材料

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摘要

For the first time, an original compound belonging to the heptazine family has been deposited in the form of thin layers, both by thermal evaporation under vacuum and spin-coating techniques. In both cases, smooth and homogeneous layers have been obtained, and their properties evaluated for eventual applications in the field of organic electronics. The layers have been fully characterized by several concordant techniques, namely UV-visible spectroscopy, steady-state and transient fluorescence in the solid-state, as well as topographic and conductive atomic force microscopy (AFM) used in Kelvin probe force mode (KPFM). Consequently, the afferent energy levels, including Fermi level, have been determined, and show that these new heptazines are promising materials for tailoring the electronic properties of interfaces associated with printed electronic devices. A test experiment showing an improved electron transfer rate from a tris-(8-hydroxyquinoline) aluminum (Alq3) photo-active layer in presence of a heptazine interlayer is finally presented.
机译:首次首次,属于七肽家族的原始化合物已经以薄层的形式沉积在真空和旋涂技术下的热蒸发。在这两种情况下,已经获得了光滑和均匀的层,并且它们的性质评估了有机电子领域的最终应用。该层已完全表征多种一音的技术,即固态的UV可见光谱,稳态和瞬态荧光,以及在开尔文探针力模式(KPFM)中使用的地形和导电原子力显微镜(AFM) 。因此,已经确定了包括费米水平的传入能量水平,并表明这些新的七髋肽是具有定制与印刷电子设备相关的接口的电子特性的有希望的材料。最终呈现显示来自三(8-羟基喹啉)铝(ALQ3)光活性层的改善的电子传递速率的测试实验最终呈现在七肽中间层存在下。

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