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Organic Electronics Picks Up the Pace: Mask‐Less Solution Processed Organic Transistors Operating at 160 MHz

机译:有机电子设备拾取速度:较少的面罩解决方案处理的有机晶体管在160 MHz

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摘要

Organic printed electronics has proven its potential as an essential enabler for applications related to healthcare, entertainment, energy, and distributed intelligent objects. The possibility of exploiting solution‐based and direct‐writing production schemes further boosts the benefits offered by such technology, facilitating the implementation of cheap, conformable, bio‐compatible electronic applications. The result shown in this work challenges the widespread assumption that such class of electronic devices is relegated to low‐frequency operation, owing to the limited charge mobility of the materials and to the low spatial resolution achievable with conventional printing techniques. Here, it is shown that solution‐processed and direct‐written organic field‐effect transistors can be carefully designed and fabricated so to achieve a maximum transition frequency of 160 MHz, unlocking an operational range that was not available before for organics. Such range was believed to be only accessible with more performing classes of semiconductor materials and/or more expensive fabrication schemes. The present achievement opens a route for cost‐ and energy‐efficient manufacturability of flexible and conformable electronics with wireless‐communication capabilities.
机译:有机印刷电子产品已证明其作为与医疗保健,娱乐,能源和分布式智能物品有关的应用的重要推动力。利用基于解决方案和直接写作生产计划的可能性进一步提高了这种技术所提供的益处,促进实施廉价,适得,生物兼容的电子应用。在该工作中所示的结果挑战,由于材料的电荷移动性有限,并且通过传统的印刷技术可实现的低空间分辨率,这种类电子设备被降低到低频操作的广泛假设。这里,示出了解决方案处理和直接写的有机场效应晶体管,可以仔细设计和制造,以实现160 MHz的最大过渡频率,解锁以前不可用的操作范围。据信这些范围仅可用于更多的半导体材料等级和/或更昂贵的制造方案。本成果开辟了具有无线通信能力的柔性和可适系的电子设备的成本和节能可制造性的路径。

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