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Highly Sensitive Flexible Pressure Sensors Based on Printed Organic Transistors with Centro-Apically Self-Organized Organic Semiconductor Microstructures

机译:基于印刷有机晶体管的高度敏感的柔性压力传感器,具有顶部自组织有机半导体微结构

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摘要

A highly sensitive pressure sensor based on printed organic transistors with three-dimensionally self-organized organic semiconductor microstructures (3D OSCs) was demonstrated. A unique organic transistor with semiconductor channels positioned at the highest summit of printed cylindrical microstructures was achieved simply by printing an organic semiconductor and polymer blend on the plastic substrate without the use of additional etching or replication processes. A combination of the printed organic semiconductor microstructure and an elastomeric top-gate dielectric resulted in a highly sensitive organic field-effect transistor (FET) pressure sensor with a high pressure sensitivity of 1.07 kPa(-1) and a rapid response time of 20 ms with a high reliability over 1000 cycles. The flexibility and high performance of the 3D OSC FET pressure sensor were exploited in the successful application of our sensors to real-time monitoring of the radial artery pulse, which is useful for healthcare monitoring, and to touch sensing in the e-skin of a realistic prosthetic hand.
机译:基于具有三维自组织有机半导体微结构(3D OSC)的印刷有机晶体管的高敏感压力传感器。通过在塑料基板上印刷有机半导体和聚合物共混物,在不使用附加的蚀刻或复制过程的情况下,仅通过在塑料基板上印刷有机半导体和聚合物混合物来实现位于印刷圆柱形微结构的最高峰值的半导体通道的独特有机晶体管。印刷有机半导体微结构和弹性体顶栅电介质的组合导致高度敏感的有机场效应晶体管(FET)压力传感器,具有1.07kPa(-1)的高压灵敏度和+的快速响应时间。 20毫秒高可靠性超过1000周期。 3D OSC FET压力传感器的灵活性和高性能在成功应用于我们的传感器以实时监测径向动脉脉冲的实时监测,这对于医疗保健监测有用,并触摸E-SKE的感测现实的假肢手。

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