Recent Advances in Self-Powered Wearable Flexible Sensors for Human Gaits Analysis. [PDF]
Hu X, Ma Z, Zhao F, Guo S.
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Electrospun conducting polymers: recent trends and the transition towards a sustainable future
This review discusses the electrospinning of conducting polymers, detailing procedures, fibrous morphologies, improved properties, applications in electronics, and challenges, while outlining future directions for nanofibre‐based devices in various fields.
Xenofon Karagiorgis +3 more
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Effect of Polymer Encapsulation on the Mechanoluminescence of Mn2+-Doped CaZnOS. [PDF]
Wu X +5 more
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Recycled Thermocol Nanofibers Based Smart Triboelectric Nanogenerators for AI‐Assisted Switching
Waste expanded polystyrene is recycled into electrospun nanofibers for a sustainable triboelectric nanogenerator. The device exhibits enhanced surface morphology, improved triboelectric output, and multifunctional applications including energy harvesting, self‐powered sensing, and intelligent human‐machine interfaces using lightweight, flexible, and ...
Shubham V. Patil +9 more
wiley +1 more source
Transfer-Printed Wrinkled PVDF-Based Tactile Sensor-Nanogenerator Bundle for Hybrid Piezoelectric-Triboelectric Potential Generation. [PDF]
Meena KK +6 more
europepmc +1 more source
Thermally Drawn Flexible Fiber Sensors: Principles, Materials, Structures, and Applications. [PDF]
Zhang Z +9 more
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Improved Pressure Sensing Performance of Self-Powered Electrochemical Pressure Sensor Using a Simple Electrode Coplanar Structure. [PDF]
Han Y +7 more
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Energy from trash: a flexible, facile, and robust triboelectric nanogenerator based on waste polystyrene and application as a human-machine interface. [PDF]
Ankit R, Prakash P, Singla R, Kolte J.
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Self-Powered Multimodal Tactile Sensing Enabled by Hybrid Triboelectric and Magnetoelastic Mechanisms. [PDF]
Lu X +10 more
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When Flexoelectricity Drives Triboelectricity
Nano Letters, 2022Triboelectricity has been known since antiquity, but the fundamental science underlying this phenomenon lacks consensus. We present a flexoelectric model for triboelectricity where contact deformation induced band bending at the nanoscale is the driving force for charge transfer.
Christopher A. Mizzi, Laurence D. Marks
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