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首页> 外文期刊>Advanced materials interfaces >A Solid-State Aqueous Electrolyte-Gated Field-Effect Transistor as a Low-Voltage Operation Pressure-Sensitive Platform
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A Solid-State Aqueous Electrolyte-Gated Field-Effect Transistor as a Low-Voltage Operation Pressure-Sensitive Platform

机译:固态水电解质门控场效应晶体管作为低压操作压敏平台

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摘要

Flexible pressure sensors are increasingly impacting a wide variety of novel applications such as wearable health care sensors, in vivo monitoring, and even artificial skin. As a fundamental device component, organic field-effect transistors (OFETs) are of great interest due to their inherent advantages related to low-cost solution fabrication processes and compatibility with plastic substrates. During OFET fabrication, it is almost impossible to avoid the water traces in the organic semiconductor (OSC) active layer, especially when ambient solution processing techniques are employed. Water exhibits a strong influence on the electrical performance in OFETs, such as hysteresis and nonideal transfer characteristics. Here, it is shown that the presence of water in OSCs also results in pressure-sensitive devices caused by the modification of the water dipole alignment. This exciting phenomenon is exploited in a novel OFET, namely, hydrogel-based electrolyte-gated organic field-effect transistor (HYGOFET), where a soft water-based hydrogel layer is employed as a dielectric layer. The hydrogel layer plays two major contributions: 1) providing a constant saturated humidity environment and 2) reducing the operation voltage. The HYGOFET exhibits a high electrical performance and relative long-term stability. Importantly, this device also exhibits an excellent pressure response in the low-pressure regime (<10 kPa) working with a very low power consumption.
机译:灵活的压力传感器越来越影响各种新颖的应用,如可穿戴医疗保健传感器,体内监测,甚至是人造皮肤。作为基本装置组件,由于与低成本解决方案制造工艺和与塑料基材的兼容性相关的固有优点,有机场效应晶体管(OFET)具有很大的兴趣。在制造过程中,几乎不可能避免有机半导体(OSC)有源层中的水迹线,尤其是当采用环境溶液处理技术时。水对OFETS的电气性能产生了强烈影响,例如滞后和非膜传递特性。这里,显示OSC中的水的存在还会导致由水偶极对准的改性引起的压敏器件。这种激动的现象在新的新鲜新鲜,即水凝胶基电解质门控有机场效应晶体管(Hygofet)中,其中使用软水基水凝胶层作为介电层。水凝胶层起两个主要贡献:1)提供恒定饱和湿度环境,2)减小操作电压。 Hygofet表现出高电性能和相对长期稳定性。重要的是,该装置还在低压调节(<10kPa)中具有非常低的功耗的低压状态(<10kPa)的优异压力响应。

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