论文标题

一个基于MXENE和聚乙烯基丁理的高度敏感的压电传感器,其检测极限和低功耗

A highly sensitive piezoresistive sensor based on MXene and polyvinyl butyral with a wide detection limit and low power consumption

论文作者

Qin, Ruzhan, Hu, Mingjun, Li, Xin, Yan, Li, Wu, Chuanguang, Liu, Jinzhang, Gao, Haibin, Shan, Guangcun, Huang, Wei

论文摘要

作为一类新的二维过渡金属碳化物和碳耐酸,MXENE已被广泛用于储能,传感器,催化,电磁干扰屏蔽和其他领域。同时实现具有极高灵敏度,广泛检测极限,低功耗和良好机械稳定性的传感器是一个挑战。在这项工作中,利用了多乙烯基丁胺的Mxene和多孔结构的高电导率,制造了高度敏感的压电传感器。制造的基于MXENE/PVB的传感器在31.2 PA-312 PA,312 PA-PA-62.4 kPa和62.4 kpa and 62.4 kpa-1248.4 kpa的范围内,〜11.9 kpa^-1,〜11.9 kpa^-1,〜1.15 kpa^-1和〜0.20 kpa^-1表现出高度敏感性。该传感器的检测范围很大(〜31.2 PA至〜2.205 MPa),低检测极限(6.8 PA),低检测电压(0.1 mV),低功耗(〜3.6 * 10^-10 W),快速响应时间(〜110毫秒)(〜110毫秒),以及良好的机械稳定性(超过10,000最大压力压力周期)。此外,证明传感器可以检测人类的微妙弯曲和释放活动,包括动脉脉冲和语音信号,这可能是作为广泛检测范围,高度敏感和低功耗的压力传感器。这项工作为扩大基于MXENE的柔性压力传感器的应用提供了新的途径,在广泛的传感范围和超低功耗领域。

As a new class of two-dimensional transition-metal carbide and carbonitride, MXene have been widely used in the energy storage, sensor, catalysis, electromagnetic interference shielding and other field. It is a challenge to simultaneously realize a sensor of extremely high sensitivity, wide detection limits, low power consumption and good mechanical stability. In this work, taking advantage of high conductivity of MXene and porous structure of polyvinyl butyral, a highly sensitive piezoresistive sensor was fabricated. The fabricated MXene/PVB-based sensor exhibits highly sensitive reliably with a factor of ~11.9 kPa^-1, ~1.15 kPa^-1 and ~0.20 kPa^-1 in the ranges of 31.2 Pa-312 Pa, 312 Pa- 62.4 kPa and 62.4 kPa-1248.4 kPa, respectively. The sensor has a wide detection range (~31.2 Pa to ~2.205 MPa), low detection limit (6.8 Pa), low detection voltage (0.1 mV), low power consumption (~3.6 * 10^-10 W), fast response time ( ~110 ms), as well as good mechanical stability (over 10,000 maximum-pressure cycles). Moreover, it is demonstrated that the sensor can detect subtle bending and release activities of human, including arterial pulses and voice signal, which is potentially suitable as a wide detection range, highly sensitive and low power consumption piezoresistive sensor. This work provides a new avenue to expand the application of MXene-based flexible pressure sensor in the field of wide sensing range and ultra-low power consumption.

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