Sensors for Stretchable Electronics in Nanotechnology

Sensors for Stretchable Electronics in Nanotechnology

Pal, Kaushik

Taylor & Francis Ltd

09/2021

158

Dura

Inglês

9780367642815

15 a 20 dias

500

Descrição não disponível.
Section I: 1. Introduction to Sensor Nanotechnology and Flexible Electronics. 2. Influence of Dynamic Bending Reliability of Flexible Hybrid Electronics. 3. Graphene Based Materials and Devices for Transparent Stretchable Electronics. 4. A High-contrast and Cost-effective Optical Hydrogen Sensor. Section II: 5. Advancements in Wireless Highly Stretchable Sensors for Hybrid Nanogenerator. 6. Elastomeric Substrate for Stretchable Electronics. 7. Ultra-Thin Graphene-assembly of Liquid Crystal Stretchable Active Matrix Performance of Thermal and Switchable Sensor. 8. Stretchable Capacitive Sensor for Highly Sensitive Electrochemical Sensing. 9. Fabrication of Stretchable Composite Film for Superconductor Applications. 10. Development of Intrinsically Stretchable Electronics Challenging for Bio-Integrated Device. 11. CNTs/Graphene-Assisted Flexible Thin-film Preparation for Stretchable Electronics and Superconductor. 12. Transfer of Oxide Transistors for Stretchable Electronics. Section III: 13. Highly Sensitive Long Term Durability of Wearable Biomedical Sensor. 14. Development to Realize Stretchable Soft Electronic Devices. 15. Future Promises and Aspects in Transparent Flexible Electronics and Optoelectronics.
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Stretchable Electronics;nanomaterials;Conductive Polymers;nanosensors;Robot Skin;electronic materials;Stretchable Conductors;semiconductors;American Chemical Society;ultra-flexible electronics;Wearable Electronics;multifunctional sensors;Flexible Electronics;graphene-based sensors;Field Effect Transistor;FET;Graphene Flakes;Stretchable Devices;Soft Robotics;Silver Nanowire;CNT Network;Thin Film CNT;MWCNT Network;Optical Fiber Sensors;Elastomeric Substrate;SPR Sensor;Strain Sensor;CNT FET;Composite Thin Film;Solution Evaporation Method;Robotic Navigation;Organic Solar Cells