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首页> 外文期刊>Scientific reports. >Piezoelectric polymer gated OFET: Cutting-edge electro-mechanical transducer for organic MEMS-based sensors
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Piezoelectric polymer gated OFET: Cutting-edge electro-mechanical transducer for organic MEMS-based sensors

机译:压电聚合物门控:用于有机MEMS的传感器的尖端电力换能器

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The growth of micro electro-mechanical system (MEMS) based sensors on the electronic market is forecast to be invigorated soon by the development of a new branch of MEMS-based sensors made of organic materials. Organic MEMS have the potential to revolutionize sensor products due to their light weight, low-cost and mechanical flexibility. However, their sensitivity and stability in comparison to inorganic MEMS-based sensors have been the major concerns. In the present work, an organic MEMS sensor with a cutting-edge electro-mechanical transducer based on an active organic field effect transistor (OFET) has been demonstrated. Using poly(vinylidenefluoride/trifluoroethylene) (P(VDF-TrFE)) piezoelectric polymer as active gate dielectric in the transistor mounted on a polymeric micro-cantilever, unique electro-mechanical properties were observed. Such an advanced scheme enables highly efficient integrated electro-mechanical transduction for physical and chemical sensing applications. Record relative sensitivity over 600 in the low strain regime (0.3%) was demonstrated, which represents a key-step for the development of highly sensitive all organic MEMS-based sensors.
机译:预计通过开发由有机材料制成的基于MEMS的传感器的新分支,预测基于电子市场的微机电系统(MEMS)传感器的生长。有机MEMS具有由于其重量轻,低成本和机械灵活性而彻底改变传感器产品。然而,与基于无机MEMS的传感器相比,它们的敏感性和稳定性是主要问题。在本作工作中,已经证明了具有基于有源有机场效应晶体管(OFET)的具有切削刃电动机械换能器的有机MEMS传感器。使用聚(偏二氟乙烯/三氟乙烯)(P(VDF-TRFE))压电聚合物作为安装在聚合物微悬臂仪上的晶体管中的有源栅极电介质,观察到独特的电力性能。这种先进方案使得能够高效地集成的电力机电转换,用于物理和化学传感应用。记录低应变制度(<0.3%)的600上的相对灵敏度(<0.3%),这代表了高敏感的基于有机MEMS的传感器的开发的关键步骤。

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