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Innovation Strategy Selection Facilitates High-Performance Flexible Piezoelectric Sensors

机译:创新策略选择有助于高性能柔性压电传感器

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摘要

Piezoelectric sensors with high performance and low-to-zero power consumption meet the growing demand in the flexible microelectronic system with small size and low power consumption, which are promising in robotics and prosthetics, wearable devices and electronic skin. In this review, the development process, application scenarios and typical cases are discussed. In addition, several strategies to improve the performance of piezoelectric sensors are summed up: (1) material innovation: from piezoelectric semiconductor materials, inorganic piezoceramic materials, organic piezoelectric polymer, nanocomposite materials, to emerging and promising molecular ferroelectric materials. (2) designing microstructures on the surface of the piezoelectric materials to enlarge the contact area of piezoelectric materials under the applied force. (3) addition of dopants such as chemical elements and graphene in conventional piezoelectric materials. (4) developing piezoelectric transistors based on piezotronic effect. In addition, the principle, advantages, disadvantages and challenges of every strategy are discussed. Apart from that, the prospects and directions of piezoelectric sensors are predicted. In the future, the electronic sensors need to be embedded in the microelectronic systems to play the full part. Therefore, a strategy based on peripheral circuits to improve the performance of piezoelectric sensors is proposed in the final part of this review.
机译:高性能和低至零功耗的压电传感器满足了体积小,功耗低的柔性微电子系统不断增长的需求,这在机器人技术和假肢,可穿戴设备和电子皮肤中是有希望的。在这篇综述中,讨论了开发过程,应用场景和典型案例。此外,总结了几种改善压电传感器性能的策略:(1)材料创新:从压电半导体材料,无机压电陶瓷材料,有机压电聚合物,纳米复合材料,到新兴的和有希望的分子铁电材料。 (2)在压电材料的表面上设计微结构,以在施加的力下扩大压电材料的接触面积。 (3)在常规压电材料中添加化学元素和石墨烯等掺杂剂。 (4)开发基于压电效应的压电晶体管。此外,还讨论了每种策略的原理,优点,缺点和挑战。除此之外,还预测了压电传感器的前景和方向。将来,电子传感器需要嵌入微电子系统中以发挥全部作用。因此,在本综述的最后部分提出了一种基于外围电路的策略来改善压电传感器的性能。

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