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Titre: | Enhanced nanogenerator by embedding lead-free double perovskite Cs2AgBiBr6 in polymer matrix for hybrid energy harvesting |
Auteur(s): | Wang, Mengrou Wang, Xin Xu, Yubing Chai, Shunjie Zhao, Zhiwei Li, Qing Wu, Jun Chen, Jing Zhu, Zhuoya Bae, Byung Seong Tala-Ighil, Razika Zhou, Jianming |
Mots-clés: | Bismuth compounds Bromine compounds Fluorine compounds Open circuit voltage Perovskite Piezoelectricity Silver compounds |
Date de publication: | 2023 |
Editeur: | Royal Society of Chemistry |
Collection/Numéro: | Journal of Materials Chemistry C / Vol.12, N° 1 (Nov. 2023);pp. 207 - 220 |
Résumé: | Mechanical energy harvesters fabricated with halide perovskites display excellent electrical output because of their prominent permittivity. An all-inorganic lead-free double perovskite, Cs2AgBiBr6 (CABB), with competitive performance, excellent environmental stability and non-toxicity can break the confines of practical unavailability. CABB microcrystals, which are effective nucleating agents and dielectric fillers, are embedded into a polyvinylidene-fluoride (PVDF)-matrix as efficient electron-acceptors to induce electro-active PVDF β-phase formation and enhance the composite dielectric constant, which contributes to notable hybrid electric outputs. CABB-PVDF hybrid nanogenerators with the optimal CABB concentration of 20 wt% possess triboelectric and piezoelectric effects, with a nanogenerator with a 1.2 cm × 1.2 cm effective contact area and 70 μm film thickness exhibiting a unique response with an open-circuit voltage of 126 V and a short-current density of 4.67 mA m−2 under a 0.5 Hz mechanical frequency and 4 cm s−1 motion speed. An identical device achieves the highest output power density of 0.39 W m−2 at 8 Hz and 0.64 m s−1, which could light up at least 86 commercial LEDs using a 1 μF capacitor and power small electronic devices such as a timer using 22 μF. The corresponding force sensing is achieved with a different distribution of external forces using a 10 wt% CABB-PVDF composite film. This functional composite maintains its stability and charge retention capacity for effective application in various environmental conditions. |
URI/URL: | https://doi.org/10.1039/d3tc03314g https://pubs.rsc.org/en/content/articlehtml/2024/tc/d3tc03314g http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/13019 |
ISSN: | 2050-7526 |
Collection(s) : | Publications Internationales
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