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Structural order in conjugated oligothiophenes and its implications on opto-electronic devices [Review]

机译:共轭低聚噻吩的结构顺序及其对光电器件的影响[综述]

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摘要

Over the last ten years, conjugated oligothiophenes have emerged as one of the largest families of organic semiconductors with potential applications in electronics devices. Thin film transistors (TFTs), photovoltaic solar cells, light-emitting diodes (LEDs), light modulators, photochromic switches and laser microcavities are some examples of devices that have been fabricated with oligothiophenes as the active materials. The key advantage of well-defined oligomers over their parent polymers is the high degree of molecular and crystalline ordering they can achieve. Polycrystalline and highly oriented thin films can be easily prepared from solution or by vacuum deposition. In many cases it has even been possible to grow single crystals and elucidate their X-ray structure. The aim of this review is to describe the structure of oligothiophene crystals and thin films and to explore its implications on the performances of various electronic devices. [References: 201]
机译:在过去的十年中,共轭低聚噻吩已经成为最大的有机半导体家族之一,在电子设备中具有潜在的应用前景。薄膜晶体管(TFT),光伏太阳能电池,发光二极管(LED),光调制器,光致变色开关和激光微腔是已用低聚噻吩作为活性材料制造的器件的一些示例。定义明确的低聚物比其母体聚合物的主要优势在于,它们可以实现高度的分子和晶体有序性。多晶和高度取向的薄膜可以很容易地由溶液或真空沉积制备。在许多情况下,甚至可以生长单晶并阐明其X射线结构。这篇综述的目的是描述寡聚噻吩晶体和薄膜的结构,并探讨其对各种电子设备性能的影响。 [参考:201]

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