An Ultrahigh Sensitive Paper-Based Pressure Sensor with Intelligent Thermotherapy for Skin-Integrated Electronics
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Summary
An all-tissue-based piezoresistive pressure sensor with ultrahigh sensitivity and reliability based on the bottom interdigitated tissue electrode and the top bridge of a microporous tissue/carbon nanotube composite was proposed, indicating its potential as reliable skin-integrated electronics.
- Type
- article
- Published
- 2020-12-01
- Cited by
- 19
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W33348582
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:229353070
Keywords
Cash, Labour economics, Demographic economics, Business, Welfare
References
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Cited by
- All Paper‐Based, Multilayered, Inkjet‐Printed Tactile Sensor in Wide Pressure Detection Range with High Sensitivity
- Vapor-Phase Polymerization of PEDOT for Wearable Fabric Pressure Sensors
- Laser-Induced Graphene (LIG)-based Pressure Sensor and Triboelectric Nanogenerator towards High-Performance Self-Powered Measurement-Control Combined System
- Electronic Alert Signal for Early Detection of Tissue Injuries in Patients: An Innovative Pressure Sensor Mattress
- Highly Sensitive, Wide-Range Pressure Sensor Based on Negative Poisson’s Ratio for Human Motion Detection
- A Flexible Sensor With Circumferential Negative Poisson’s Ratio Characteristics for Human Interaction
- Ti3C2Tx MXene Paper-Based Wearable and Degradable Pressure Sensor for Human Motion Detection and Encrypted Information Transmission.
- Two-dimensional material-assisted paper substrate-based strain sensor for motion signals measurement
- Ultrahigh-Sensitivity Pressure Sensor With Graphene Aerogel Electrodes
- A Review on Soft Pneumatic Actuators with Integrated or Embedded Soft Sensors
- Emergence of integrated biosensing-enabled digital healthcare devices
- Paper‐Based Electronics: Toward Sustainable Electronics
- Vacuum Filtration-Coated Silver Electrodes Coupled with Stacked Conductive Multi-Walled Carbon Nanotubes/Mulberry Paper Sensing Layers for a Highly Sensitive and Wide-Range Flexible Pressure Sensor
- Preparation and Multifunctional Applications of Paper-Based Piezoresistive Sensors Based on Bilayer Microstructures
- Development of Carbon Black based Flexible Tactile and Humidity Sensor
- High sensitive pressure sensors with a wide detection range based on hierarchical wrinkled MXene/tissue paper composite films
- Flexible and Printed Electronics
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