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Towards implementation of logic circuits based on intrinsically reconfigurable organic transistors

机译:致力于基于本质上可重构的有机晶体管的逻辑电路的实现

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Nowadays, electronic circuits based on wide range of organic materials with semiconductor properties are still perceived as a somewhat unconventional design approach and fabrication technology. However, it could potentially deliver many significant advantages. Materials for organic electronics are typically lighter, flexible, easier to handle and less expensive in comparison with traditional inorganic materials used in electronics (e.g. copper and silicon used for conventional CMOS process). Previously reported research achievements in that particular domain also indicate that some of the organic semiconductor materials could be used for construction of organic field-effect transistors (OFET) that exhibit rather peculiar ability of ambipolar charge conduction. Fundamental electronic structures of such type also suggest the perspective of their utilization as the key building blocks for so called multifunctional logic elements or even more complex polymorphic circuits. In this paper, main focus is given to the introduction of organic transistor devices with the ambipolar property that would allow to further increase the efficiency of multifunctional circuit design and synthesis techniques. Important aspect depicting the novelty of the proposed approach is primarily based on the adoption of hybrid combination of the traditional silicon substrate with the deposition of suitable organic semiconductor layer. In addition, custom chip carrier platform was also developed for this purpose. Finally, the paper is concluded with review of the achieved results and suggestion of further research directions.
机译:如今,基于具有半导体特性的各种有机材料的电子电路仍被认为是某种非常规的设计方法和制造技术。但是,它可能潜在地带来许多重要的优势。与电子设备中使用的传统无机材料(例如,传统CMOS工艺中使用的铜和硅)相比,用于有机电子设备的材料通常更轻,柔性,易于处理且价格便宜。先前报道的在该特定领域的研究成果还表明,某些有机半导体材料可用于构建具有相当特殊的双极性电荷传导能力的有机场效应晶体管(OFET)。这种类型的基本电子结构还提出了将其用作所谓多功能逻辑元件或什至更复杂的多态电路的关键构造块的观点。本文主要关注具有双极性特性的有机晶体管器件的引入,这将进一步提高多功能电路设计和合成技术的效率。描绘所提出的方法的新颖性的重要方面主要是基于传统硅衬底与合适的有机半导体层的沉积的混合组合的采用。此外,为此还开发了定制的芯片载体平台。最后,总结了所取得的成果并提出了进一步研究方向的建议。

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