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Liquid Crystal-on-Organic Field-Effect Transistor Sensory Devices for Perceptive Sensing of Ultralow Intensity Gas Flow Touch

机译:用于超低强度气流触摸感知的有机液晶场效应晶体管传感装置

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We demonstrate liquid crystal-on-organic field-effect transistor (LC-on-OFET) sensory devices that can perceptively sense ultralow level gas flows. The LC-on-OFET devices were fabricated by mounting LC molecules (4-cyano-4′-pentylbiphenyl – 5CB) on the polymer channel layer of OFET. Results showed that the presence of LC molecules on the channel layer resulted in enhanced drain currents due to a strong dipole effect of LC molecules. Upon applying low intensity nitrogen gas flows, the drain current was sensitively increased depending on the intensity and time of nitrogen flows. The present LC-on-OFET devices could detect extremely low level nitrogen flows (0.7?sccm–11?μl/s), which could not be felt by human skins, thanks to a synergy effect between collective behavior of LC molecules and charge-sensitive channel layer of OFET. The similar sensation was also achieved using the LC-on-OFET devices with a polymer film skin, suggesting viable practical applications of the present LC-on-OFET sensory devices.
机译:我们演示了有机上液晶场效应晶体管(LC-on-OFET)传感设备,可以感知超低水平的气流。通过将LC分子(4-氰基-4'-戊基联苯– 5CB)安装在OFET的聚合物通道层上,可以制造Oon上的LC器件。结果表明,由于LC分子的强偶极效应,沟道层上LC分子的存在导致漏极电流增加。在施加低强度的氮气流时,根据氮气流的强度和时间灵敏地增加了漏极电流。目前的LC-on-OFET装置可以检测到极低水平的氮气流量(0.7?sccm–11?μl/ s),这是由于LC分子的集体行为与电荷分子之间的协同效应所致,人类的皮肤无法感知OFET的敏感通道层。使用具有聚合物膜皮肤的LC-on-OFET器件也获得了类似的感觉,表明本发明的LC-on-OFET感官器件的可行的实际应用。

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