首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Spectroscopic characterization of charge carriers of the organic semiconductor quinacridone compared with pentacene during redox reactions
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Spectroscopic characterization of charge carriers of the organic semiconductor quinacridone compared with pentacene during redox reactions

机译:氧化还原反应过程中有机半导体喹ac啶酮与并五苯相比的载流子的光谱表征

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In recent research, the pigment quinacridone, a hydrogen-bonded organic semiconductor, has gained attention in electronic device and catalysis applications due to its extraordinary stability. In this work, we combine electrochemistry with spectroscopy ranging from UV-VIS to mid-IR, allowing a deeper understanding and also structural analysis of the redox products. This is important for materials used in bioelectronic applications, such as quinacridone which is a promising candidate. Several absorption bands related to sub-gap transitions appear upon redox reactions in this spectral range. Optical experiments are correlated with electron paramagnetic resonance measurements, proving the formation of different kinds of charge carriers. The results are discussed and compared with those for the all-carbon five-ring analogous molecule pentacene, because both pigments are candidates for ambipolar organic field-effect transistors, showing similar charge carrier mobilities. In the case of quinacridone, the charged species created upon redox reactions are more localized on different functional groups in the heteroatomic structure than in pentacene.
机译:在最近的研究中,氢醌键合的有机半导体颜料喹ac啶酮因其非凡的稳定性而受到电子设备和催化应用的关注。在这项工作中,我们将电化学与从UV-VIS到中红外的光谱学结合起来,从而可以更深入地了解氧化还原产物并进行结构分析。这对于生物电子应用中使用的材料非常重要,例如喹ac啶酮是有前途的候选材料。在该光谱范围内,在氧化还原反应中出现了与次能隙跃迁有关的几个吸收带。光学实验与电子顺磁共振测量相关,证明了各种电荷载流子的形成。讨论了该结果并将其与全碳五环类似分子并五苯的结果进行了比较,因为两种颜料都是双极性有机场效应晶体管的候选者,显示出相似的载流子迁移率。在喹ac啶酮的情况下,与并五苯相比,氧化还原反应产生的带电物质更多地位于杂原子结构中的不同官能团上。

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