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3-Dimensional Logic Motion Sensing of Polyvinylidene Fluoride for Self-Powered Flexible Interactive Electronics

机译:三维逻辑运动对自动柔性互动电子产品的聚偏二氟乙烯运动

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New tactile sensing technologies have attracted more attention recently. Here, we demonstrated that the reduced graphene oxide/polyvinylidene fluoride (rGOPF) flexible film could effectively recognize, after triboelectrification, the 3-dimensional (3D) motions of human fingers with a polyethylene terephthalate (PET) cover through the induced positive/negative or strong/weak potential responses. Results show that this electrostatic induced potential could be up to $sim 78pm 8 mV$ (touch mode) and $sim 30pm 5 ext{mV}$ (touchless mode) under the defined conditions, respectively. A phenomenological scheme was proposed to explain these phenomena. It is based on the material microstructure and the classical theories of electrification and electrostatic induction, and confirmed via a series of experiments. To highlight the practical applications of this 3D-spatial sensing technique for human-finger electronics, two pairs of electrodes were integrated into an rGOPF flexible film to enhance its logic recognition capability from one axis to all directions. We illustrate its accurate recording capability for both Chinese character “” and English letters “K-S-A” as a touchless, self-powered flexible writing panel. This sensing technique provides a new sensing experience that the present array sensors via a touch mode cannot offer.
机译:新的触觉传感技术最近引起了更多的关注。在这里,我们证明了在摩擦方法中,可以有效地识别石墨烯/聚偏二氟乙烯(RGOPF)柔性薄膜,通过诱导的阳性/阴性或负面/阴性或负面/阴性或强/弱潜在的反应。结果表明,这种静电诱导的潜力可以达到 $ sim 78 pm 8 mv $ (触摸模式)和 $ sim 30 pm 5 text {mv} $ (不锈模式)分别在规定的条件下。提出了一种现象学方案来解释这些现象。它基于材料微观结构和电气化和静电感应的经典理论,并通过一系列实验证实。为了突出这种3D空间传感技术对人体指电子器件的实际应用,将两对电极集成到RGOPF柔性膜中,以从一个轴到所有方向增强其逻辑识别能力。我们说明了汉字“”和英语字母“K-S-A”的准确记录能力,作为无舒张,自动的柔性写入面板。该传感技术提供了一种新的传感体验,即通过触摸模式提供当前阵列传感器。

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