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Three-Dimensional Multistack-Printed, Self-Powered Flexible Pressure Sensor Arrays: Piezoelectric Composites with Chemically Anchored Heterogeneous Interfaces

机译:三维多堆叠印刷,自供电柔性压力传感器阵列:具有化学锚定异质界面的压电复合材料

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Recently, the development of pressure sensor devices composed of mechanically flexible materials has gained a tremendous attention for emerging wearable electronics applications. Compared with various sensing materials, piezoelectric composite materials provide a characteristic advantage of enabling energy unit-free integration of sensor compartments. In this study, we develop a new chemical method of synthesizing highly functioning piezoelectric composite materials with electrostatically reinforced heterogeneous interfaces to improve the voltage output signal in all-printed sensor arrays. The surfaces of piezoelectric oxide nanoparticles are decorated subsequently with a cationic polyelectrolyte, polyethyleneimine, and a tri-block copolymer, styrene–ethylene/butylene–styrene grafted with maleic anhydride. To elucidate the factors determining the performance of pressure sensor devices, both the electrical properties and piezoelectric characteristics are investigated comprehensively for various compositional composite materials prepared from chemical and physical rubbers. The resulting device exhibits a sensitivity of 0.28 V·kPa–1 with a linear increment of output voltage in a pressure range up to 30 kPa. It is also demonstrated that the all-printed sensor array is fabricated successfully by a multistack-printing process of conductive, insulating, and piezoelectric composite materials in an additive manufacturing fashion.
机译:近来,由机械柔性材料组成的压力传感器装置的开发已经引起了新兴的可穿戴电子应用的极大关注。与各种传感材料相比,压电复合材料具有可实现无能量单位的传感器隔室集成的特性优势。在这项研究中,我们开发了一种新的化学方法,可以合成具有静电增强异质界面的高性能压电复合材料,以改善全印刷传感器阵列中的电压输出信号。压电氧化物纳米颗粒的表面随后用阳离子聚电解质聚乙烯亚胺和接枝有马来酸酐的三嵌段共聚物苯乙烯-乙烯/丁烯-苯乙烯修饰。为了阐明决定压力传感器装置性能的因素,对由化学和物理橡胶制成的各种成分复合材料的电学性能和压电特性进行了全面研究。最终的器件在高达30 kPa的压力范围内具有0.28 V·kPa-1的灵敏度,并且输出电压呈线性增加。还证明了通过导电,绝缘和压电复合材料的多层堆叠工艺以增材制造方式成功制造了全印刷传感器阵列。

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