Biosynthesized α-MnO2 -based polyaniline binary composite as efficient bioanode catalyst for high-performance microbial fuel cell

Microbial fuel cell (MFC) has novel technological advances in simultaneous power generation and wastewater treatment applications. In this study, low-cost biosynthesizedα-MnO2 nanoparticles integration with conducting polyaniline (PANI) matrix to form α-MnO2/PANI hybrid nanocomposite was fabricated by in situ polymerization method. The prepared material was characterized through UV-Vis spectroscopy, XRD, FTIR, TGA-DTA, DSC, SEM, cyclic voltammetry, and impedance spectroscopy. MFC performance study was done by using an external resistance in the range of100 ohm–100 kohm. The continuous test on bare pencil graphite electrode (PGE),α-MnO2/PGE, PANI/PGE, and α-MnO2/PANI/PGE were evaluated in glucose-fed-Escherichia coli-based MFC. It was found that α-MnO2/PANI/PGE produces a maximum power and current densities of 426.26±38.89mW m−2 and 2485.51±397.31mA m−2, respectively. This was 6.5 and 5.7-fold higher in power and current densities than unmodified PGE. The maximum chemical oxygen demand produced by hybrid composite modified anode during closed circuit voltage or with external resistance and open circuit volt-age (OCV) (circuit without connecting external resistance) measurements were found to be 88.19% and 92.27%, respectively. A maximum of 650.61±10.11mVOCVwasobtainedbyα-MnO2/PANI/PGE while 222.36±8.16mV of OCV was generated by PGE.

Subscribe to access this work and thousands more
Overall Rating

0

5 Star
(0)
4 Star
(0)
3 Star
(0)
2 Star
(0)
1 Star
(0)
APA

Dessie, Y. (2023). Biosynthesized α-MnO2 -based polyaniline binary composite as efficient bioanode catalyst for high-performance microbial fuel cell. Afribary. Retrieved from https://afribary.com/works/biosynthesized-a-mno2-based-polyaniline-binary-composite-as-efficient-bioanode-catalyst-for-high-performance-microbial-fuel-cell

MLA 8th

Dessie, Yilkal "Biosynthesized α-MnO2 -based polyaniline binary composite as efficient bioanode catalyst for high-performance microbial fuel cell" Afribary. Afribary, 21 Aug. 2023, https://afribary.com/works/biosynthesized-a-mno2-based-polyaniline-binary-composite-as-efficient-bioanode-catalyst-for-high-performance-microbial-fuel-cell. Accessed 27 Apr. 2024.

MLA7

Dessie, Yilkal . "Biosynthesized α-MnO2 -based polyaniline binary composite as efficient bioanode catalyst for high-performance microbial fuel cell". Afribary, Afribary, 21 Aug. 2023. Web. 27 Apr. 2024. < https://afribary.com/works/biosynthesized-a-mno2-based-polyaniline-binary-composite-as-efficient-bioanode-catalyst-for-high-performance-microbial-fuel-cell >.

Chicago

Dessie, Yilkal . "Biosynthesized α-MnO2 -based polyaniline binary composite as efficient bioanode catalyst for high-performance microbial fuel cell" Afribary (2023). Accessed April 27, 2024. https://afribary.com/works/biosynthesized-a-mno2-based-polyaniline-binary-composite-as-efficient-bioanode-catalyst-for-high-performance-microbial-fuel-cell