This review summarizes recent progress in the use of biological materials (biomaterials) in wearable pressure sensors. Biomaterials are abundant, sustainable, biocompatible, and biodegradable. Especially, many have sophisticated hierarchical structure and biological characteristics, which are attractive candidates for facile and ecologically-benign fabrication of wearable pressure sensors that are biocompatible, biodegradable, and highly sensitivity. The biomaterials and structures that use them in wearable pressure sensors that exploit sensing mechanisms such as piezoelectric, triboelectric, piezoresistive and capacitive effects are present. Finally, remaining impediments are discussed to use of biomaterials in wearable pressure sensors.
High-performance wearable sensors, especially resistive pressure and strain sensors, have shown to b...
Flexible sensors are the essential foundations of pressure sensing, microcomputer sensing systems, a...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...
Gels, as typical flexible and soft materials, possess the intrinsic merits of transparent bionic str...
Advancements in materials science and fabrication techniques have contributed to the significant gro...
Advancements in materials science and fabrication techniques have contributed to the significant gro...
Piezoelectric properties, capable of transforming mechanical stress into an electrical potential, or...
The ultimate biodegradability and eco-friendly usage have made the biocomposite materials applicable...
Flexible electronic technology is one of the research hotspots, and numerous wearable devices have b...
Tactile sensors, most commonly referred as strain and pressure sensors, can collect mechanical prope...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
Wearable sensors and devices capable of simulating human somatosensation are highly desirable to dev...
Wearable sensors attract significant attention due to their potential applications especially in per...
Wearable healthcare presents exciting opportunities for continuous, real-time, and noninvasive monit...
Flexible pressure sensors are attracting great interest from researchers and are widely applied in v...
High-performance wearable sensors, especially resistive pressure and strain sensors, have shown to b...
Flexible sensors are the essential foundations of pressure sensing, microcomputer sensing systems, a...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...
Gels, as typical flexible and soft materials, possess the intrinsic merits of transparent bionic str...
Advancements in materials science and fabrication techniques have contributed to the significant gro...
Advancements in materials science and fabrication techniques have contributed to the significant gro...
Piezoelectric properties, capable of transforming mechanical stress into an electrical potential, or...
The ultimate biodegradability and eco-friendly usage have made the biocomposite materials applicable...
Flexible electronic technology is one of the research hotspots, and numerous wearable devices have b...
Tactile sensors, most commonly referred as strain and pressure sensors, can collect mechanical prope...
Flexible piezoresistive pressure sensors obtain global research interest owing to their potential ap...
Wearable sensors and devices capable of simulating human somatosensation are highly desirable to dev...
Wearable sensors attract significant attention due to their potential applications especially in per...
Wearable healthcare presents exciting opportunities for continuous, real-time, and noninvasive monit...
Flexible pressure sensors are attracting great interest from researchers and are widely applied in v...
High-performance wearable sensors, especially resistive pressure and strain sensors, have shown to b...
Flexible sensors are the essential foundations of pressure sensing, microcomputer sensing systems, a...
Ultrathin sensing devices utilizing piezoelectric materials have emerged as potential candidates to ...