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Highly Efficient and Durable Piezoelectric Nanogenerator and Photo-Power Cell Based on CTAB-Modified-Montmorillonite Incorporated PVDF Film

DOI:10.1021/acssuschemeng.8b05080 期刊:ACS Sustainable Chemistry & Engineering 出版年份:2019 更新时间:2025-11-14 17:28:48
摘要: Herein, we have successfully designed two eco-friendly, biocompatible and cost-effective devices i.e. a piezoelectric nanogenerator (PENG) and a self-charged photo-power cell (PPC) by developing a multifunctional CTAB modified montmorillonite (MMT) incorporated poly(vinylidene fluoride) (PVDF) thin film with large electroactive β crystallites and dielectric properties. Incorporation of CTAB modified MMT in PVDF leads to nucleation of piezoelectric β crystallite (F(β)) ~ 91% as well as the dielectric constant ~ 48 at 3 mass% doping of CTAB-MMT. The enrichment of the electroactive β phase crystallization and high dielectric constant pilot to a good piezoelectricity ( d33) ~ 62.5 pC/N at 50 Hz of the thin film. Our CTAB-MMT/PVDF based PENG (CMPENG) with superior piezoelectricity shows high output power generation with power density ~ 50.72 mW/cm3 under periodic finger impartation and having ability to charge up a 1μF capacitor up to 2.4 V within 14 seconds under gentle finger impartation. The CMPENG also have the potential to glow up commercially available 26 blue light-emitting diodes (LEDs) connected in series. The self-charged PPC has been designed with the thin film in association with MnO2-MWNT/PVP/H3PO4. Our PPC is able to generate supercilious output voltage ~ 1.38 V and short circuit current ~ 3.7 mA/cm2under light illumination with specific areal capacitance and energy storage efficiency ~ 1501 F/m2 and ~ 93% respectively. The realistic application of our PPC is investigated by lightening up 24 blue LEDs for 7 days with same intensity by charging the device once for 50 seconds.
作者: Prosenjit Biswas,Nur Amin Hoque,Pradip Thakur,Md. Minarul Saikh,Swagata Roy,Farha Khatun,Biswajoy Bagchi,Sukhen Das
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To develop highly efficient and durable piezoelectric nanogenerator and photo-power cell based on CTAB-modified-montmorillonite incorporated PVDF film for energy harvesting and storage applications.

The CTAB-MMT/PVDF composite film achieved high electroactive β-phase content (91%) and dielectric constant (48), leading to efficient piezoelectric nanogenerator and photo-power cell devices with superior performance, durability, and practical applications in energy harvesting and storage.

The study may have limitations in scalability for industrial applications, potential agglomeration of fillers at higher concentrations reducing performance, and the need for further optimization of device durability and efficiency under varying environmental conditions.

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