Porous polysiloxane MWCNT nanocomposites for high-performance and scalable triboelectric nanogenerators. [PDF]
Gulahmadov O +6 more
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Power management technologies for triboelectric nanogenerators. [PDF]
Du S +4 more
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Synthesis and applications of NPB derivatives as hole transport molecules for performance manipulation of fiber-based triboelectric nanogenerators. [PDF]
Arkan MZ +7 more
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Polymer Gel-Based Triboelectric Nanogenerators: Conductivity and Morphology Engineering for Advanced Sensing Applications. [PDF]
Sutradhar SC +3 more
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Triboelectric nanogenerators for neural data interpretation: bridging multi-sensing interfaces with neuromorphic and deep learning paradigms. [PDF]
Gan L +5 more
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Pull-Push Interaction between Ions and Synthetic Polymers in All-Fiber Triboelectric Nanogenerators for Wireless Healthcare Applications. [PDF]
Duo H, Liu Y, Wang H, Sakamoto H.
europepmc +1 more source
Scalable Self-Powered Sensor Based on Triboelectric Nanogenerators with Surface-Modulated Electronegativity for Harsh Environments. [PDF]
Wu CS, Lai SN, Chu YH.
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This book introduces an innovative and high-efficiency technology for mechanical energy harvesting. The book covers the history and development of triboelectric nanogenerators, basic structures, working principles, performance characterization, and potential applications.
Wang, Zhong Lin +4 more
openaire +3 more sources
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From contact electrification to triboelectric nanogenerators
Reports on Progress in Physics, 2021Although the contact electrification (CE) (or usually called ‘triboelectrification’) effect has been known for over 2600 years, its scientific mechanism still remains debated after decades.
Z. Wang
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Towards optimized triboelectric nanogenerators [PDF]
The rapid progression of electronic technologies is predicted to enhance the quality of life of the people around the world. A key challenge in achieving these targets is the need to develop sustainable power sources, which can support the ubiquitous and
R D I G Dharmasena, S R P Silva
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