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◆ Advanced Composites and Hybrid Materials2025-12-23· Triboelectric effect

Electrospun PVDF/Si-HBP of 1 st generation composite nanofibers: enabling enhanced charge density and power output in TENG

Vadakkaveedu Subramanian Niranjana, Insun Woo, Jae Uk Yoon, Tae Yong Kim, Prasad Gajula, Arun Anand Prabu, Jin Woo Bae

原始摘要(英文原文)· Original abstract
Abstract Sustainable and self-powered wearable electronics powered by triboelectric nanogenerators (TENGs) have the potential to replace conventional battery-powered devices. In this study, we report a novel approach to enhance the charge density and power output of polyvinylidene fluoride (PVDF)-based TENGs by incorporating lab-scale synthesized silane-core hyperbranched polyester of 1st generation (Si-HBP-G1; 0, 5, 10, 15 and 20 wt% relative to PVDF content) using electrospinning to form hybrid composite mats. Unlike traditional inorganic fillers, Si-HBP-G1 with a tribonegative silane core and hydroxyl end group ensures uniform dispersion and strong interfacial interaction with PVDF. The electrospun PVDF/Si-HBP-G1 (PG1) composite mats served as the tribonegative layer and an aluminum electrode served as the tribopositive layer in the fabricated TENG device. The optimized PVDF/Si-HBP-G1-15 wt% (PG1-15)-based TENG exhibited voltage output of 76 V, current of 2.1 µA, charge density of 8.3 µC m − 2 and peak power density of 0.035 W m − 2 . PG1-15-based TENG also demonstrated its ability to power 40 LEDs and a stopwatch. The device also produced voltage outputs in response to mechanical stimuli, such as tapping and bending, demonstrating its applicability for integration into advanced sensing systems for real-world applications.
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Electrospun PVDF/Si-HBP of 1 st generation composite nanofibers: enabling enhanced charge density and power output in TENG — 科研速览 Science Skim