A highly sensitive piezoresistive sensor based on MXene and polyvinyl butyral with a wide detection limit and low power consumption
Ruzhan Qin, Mingjun Hu, Xin Li, Li Yan, Chuanguang Wu, Jinzhang Liu,, Haibin Gao, Guangcun Shan, and Wei Huang

TL;DR
This paper reports a highly sensitive, wide-range, low-power MXene/polyvinyl butyral piezoresistive sensor capable of detecting subtle human activities with excellent mechanical stability.
Contribution
It introduces a novel MXene/PVB-based sensor with unprecedented sensitivity, broad detection range, and ultra-low power consumption, advancing flexible pressure sensor technology.
Findings
Sensitivity factor of ~11.9 kPa^-1 in low pressure range
Detection range from 31.2 Pa to 2.205 MPa
Low power consumption of ~3.6 * 10^-10 W
Abstract
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…
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