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首页> 外文期刊>Journal of Materiomics >Highly sensitive flexible capacitive pressure sensor with a broad linear response range and finite element analysis of micro-array electrode
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Highly sensitive flexible capacitive pressure sensor with a broad linear response range and finite element analysis of micro-array electrode

机译:高度敏感的柔性电容压力传感器,具有宽线性响应范围和微阵电极的有限元分析

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摘要

With the continuous development of wearable electronics, health care and smart terminals, highly performance flexible pressure sensors present a huge application prospect. In this study, by introducing the micro-array structured electrodes and dielectric layers with high dielectric constant, capacitive pressure sensor fabricated with a brand new preparation strategy and highly sensitive is proposed. The prepared micro-array structure is the basis for sensors with high sensitivity. Besides, the contact area between the two electrodes changes from linear to planar with the increased loading, which result in a wider linear responding range. In addition, by introducing ceramic dielectric material-barium titanate (BT) fillers into the dielectric layer to increase it’s the dielectric constant, the sensitivity of the sensor shows two-fold increase. Moreover, the sensitivity gradients can be tuned by changing the loading contents of BT particles. Hence, compared with parallel board capacitive sensors with ordinary dielectric layer, these sensors exhibit excellent performance as follow, high sensitivity (up to 4.9?kPa~(?1)) under low pressure range (0–2500?Pa), low detection limit (<1.7?Pa), short response time (<50?ms), a stable response over 5000 loading-unloading cycles, bending stability and an adjustable sensitivity. Further, the flexible pressure sensor can detect the pressure of the water droplets and monitor human movement behavior. With the facile design and excellent comprehensive properties, the flexible pressure sensor provides a new approach to improve the sensitivity and shows a broad application prospects in the wearable electronics, health care and smart terminals.
机译:随着可穿戴电子产品,医疗保健和智能终端的不断发展,高性能灵活的压力传感器具有巨大的应用前景。在这项研究中,通过引入具有高介电常数的微阵列结构电极和介电层,提出了具有全新制备策略和高敏感的电容压力传感器。制备的微阵列结构是具有高灵敏度的传感器的基础。此外,两个电极之间的接触面积与增加的负载增加到平面,这导致更宽的线性响应范围。另外,通过将陶瓷介电材料 - 钛(BT)填料引入介电层中以增加它是介电常数,传感器的灵敏度显示出两倍的增加。此外,可以通过改变BT粒子的装载内容来调谐灵敏度梯度。因此,与具有普通介电层的平行板电容式传感器相比,这些传感器在低压范围内具有如下优异性能,高灵敏度(高达4.9?KPA〜(Δ1)),低检测限(<1.7?PA),短响应时间(<50?MS),稳定响应超过5000加载 - 卸载循环,弯曲稳定性和可调节灵敏度。此外,柔性压力传感器可以检测水滴的压力并监测人体运动行为。随着弹性的设计和优异的综合性能,柔性压力传感器提供了一种新的方法来提高灵敏度,并在可穿戴电子设备,医疗保健和智能终端中显示了广泛的应用前景。

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