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- W3213792495 abstract "Carbon developed from biomass is employed in the electrochemical energy storage device. By the development of novel carbon-based substances, especially the cost-effective, abundantly available biomass and its nanocomposite electrodes have gathered significant interest in formulating energy storing devices. The electrochemical energy storage properties of biochar-based composites had been analyzed in the present work. Banana stem (BS), a naturally abundant agricultural waste material was used as raw material for the study. It was pyrolyzed at 500 ℃ for 12 h under nitrogen atmosphere. Biochar (BC) was then converted into a binary composite with manganese (BC-Mn) and then to a ternary composite with PANI (BC-Mn/PANI). The composite formation was confirmed by the electronic transitions at 296 and 396 nm. The prominent peaks in XRD at 2θ values 38.3°, 42.6°, 56.4°, and 65.6° and 20.8° confirmed the presence of γ-type MnO2 and PANI in the composite. SEM images clearly displayed compact granular spherical morphology. The average particle size for BC-Mn and BC-Mn/PANI found to be 21.43 nm and 10.10 nm respectively from TEM images. The charge transfer resistance of BC-Mn (17.5 Ω) was found to be greater than BC-Mn/PANI (10.3 Ω), make the PANI composite a promising electrode material, though derived from a biomass. The specific capacitance values for BC-Mn (138 Fg−1) and BC-Mn/PANI (241.5 Fg−1) composites further proved the potential of the material. To satisfy the high demand for energy density a new concept hybrid supercapacitor came into an existence. By this approach energy density and the capacitance can be increased. In this current period, a composite electrode material-based biomass proved to be more promising one and highlighted as an alternative electrode material. We can combine relatively cheap materials to attain high electrochemical performance." @default.
- W3213792495 created "2021-11-22" @default.
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- W3213792495 date "2021-10-20" @default.
- W3213792495 modified "2023-09-23" @default.
- W3213792495 title "Synthesis and Performance Evaluation of Supercapacitor Based on Manganese Loaded Biochar/Polyaniline Nanocomposite" @default.
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- W3213792495 doi "https://doi.org/10.1007/978-981-16-4321-7_6" @default.
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