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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OFET:尖端的机电换能器用于基于MEMS的有机传感器

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摘要

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:通过开发由有机材料制成的基于MEMS的传感器的新分支,预计不久将推动基于微机电系统(MEMS)的传感器在电子市场上的发展。由于其重量轻,成本低和机械灵活性强,有机MEMS有望革新传感器产品。然而,与基于无机MEMS的传感器相比,它们的灵敏度和稳定性一直是主要关注的问题。在当前的工作中,已经展示了具有基于有源有机场效应晶体管(OFET)的尖端机电换能器的有机MEMS传感器。在安装在聚合物微悬臂上的晶体管中,使用聚偏二氟乙烯/三氟乙烯(P(VDF-TrFE))压电聚合物作为有源栅极电介质,观察到了独特的机电性能。这种先进的方案可为物理和化学传感应用实现高效的集成机电转换。在低应变状态下(<0.3%),记录了超过600的相对灵敏度,这代表了开发高灵敏度的所有基于有机MEMS的传感器的关键步骤。

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