Surface Roughness and Electrochemical Performance Properties of Biosynthesized α-MnO2/NiO-Based Polyaniline Ternary Composites as Efficient Catalysts in Microbial Fuel Cells
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In this study, biosynthesized α-MnO2/NiO NPs and chemically oxidative polyaniline (PANI) were synthesized to form ternary composite anode material for MFC. The synthesized materials were characterized with different materials (UV-Vis, FTIR, XRD, TGA-DTA-DSC, SEM-EDX-Gwyddion, CV, and EIS) to deeply examine their optical, structural, morphological, thermal, roughness, and electrocatalytic properties. As a result, the bioelectrical activity of α-MnO2/NiO/PANI composite-modified PGE was very effective in producing a maximum power density of 506.96mW m-2with COD of 81.92%. The above observations justified that α-MnO2/NiO/PANI/PGE serves as an effective anode material in double-chambered MFC applications.
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APA
(2026). Surface Roughness and Electrochemical Performance Properties of Biosynthesized α-MnO2/NiO-Based Polyaniline Ternary Composites as Efficient Catalysts in Microbial Fuel Cells. Afribary. Retrieved June 14, 2026, from http://library.afribary.com/works/surface-roughness-and-electrochemical-performance-properties-of-biosynthesized-mno2nio-based-polyaniline-ternary-composites-as-efficient-catalysts-in-microbial-fuel-cells
MLA
"Surface Roughness and Electrochemical Performance Properties of Biosynthesized α-MnO2/NiO-Based Polyaniline Ternary Composites as Efficient Catalysts in Microbial Fuel Cells." Afribary, 7 Jun. 2026, http://library.afribary.com/works/surface-roughness-and-electrochemical-performance-properties-of-biosynthesized-mno2nio-based-polyaniline-ternary-composites-as-efficient-catalysts-in-microbial-fuel-cells. Accessed June 14, 2026.
Chicago
"Surface Roughness and Electrochemical Performance Properties of Biosynthesized α-MnO2/NiO-Based Polyaniline Ternary Composites as Efficient Catalysts in Microbial Fuel Cells." Afribary (2026). Accessed June 14, 2026. http://library.afribary.com/works/surface-roughness-and-electrochemical-performance-properties-of-biosynthesized-mno2nio-based-polyaniline-ternary-composites-as-efficient-catalysts-in-microbial-fuel-cells