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/Author (Sirajudeen, Abdul and Annuar, M.)
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/Title ({Polymeric nanocomposition for innovative functional enhancement of electrodes and proton exchange membrane in microbial fuel cell})
/bibtex#2FURL (https://www.shd-pub.org.rs/index.php/JSCS/article/view/9361)
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/Keywords (anode,cathode,microbial fuel cell,polymeric nanocomposites,proton exchange membrane)
/Subject (Practical application of microbial fuel cell \(MFC\), a sustainable energy device, is hampered by low power output. Its principal components i.e. anode, cathode and proton exchange membrane \(PEM\) are the focus of enhancement and modification in terms of their functional design and material. The anode surface conduciveness as electron sink is crucial to the power output magnitude, while the cathode electrode should be reactive for efficient oxygen reduction at tri-phase junction. PEM is solely responsible for unidirectional proton flow concomitantly completing the electrical circuit. Polymeric nanocomposites as electrode modifier improved significantly anode/cathode/PEM functions thus overall MFC performance. The review highlights the progress made in polymer-based modifications to anode, cathode and PEM material and function between year 2014 to 2019. The effects to biocompatibility, surface area, internal resistance, electrochemical activities, environmental sustainability, and overall MFC performance are discussed.nema)
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Practical application of microbial fuel cell (MFC), a sustainable energy device, is hampered by low power output. Its principal components i.e. anode, cathode and proton exchange membrane (PEM) are the focus of enhancement and modification in terms of their functional design and material. The anode surface conduciveness as electron sink is crucial to the power output magnitude, while the cathode electrode should be reactive for efficient oxygen reduction at tri-phase junction. PEM is solely responsible for unidirectional proton flow concomitantly completing the electrical circuit. Polymeric nanocomposites as electrode modifier improved significantly anode/cathode/PEM functions thus overall MFC performance. The review highlights the progress made in polymer-based modifications to anode, cathode and PEM material and function between year 2014 to 2019. The effects to biocompatibility, surface area, internal resistance, electrochemical activities, environmental sustainability, and overall MFC performance are discussed.nema
Abdul Sirajudeen
M. Annuar
bibtex/citationkey/Sirajudeen2021
bibtex/file/:C\:/Users/Dekanski/AppData/Local/Mendeley Ltd./Mendeley Desktop/Downloaded/Sirajudeen, Annuar - 2021 - Polymeric nanocomposition for innovative functional enhancement of electrodes and proton exchange membrane i.pdf:pdf;:01_9361_5400.pdf:PDF
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10.2298/jsc200402054s
anode
cathode
microbial fuel cell
polymeric nanocomposites
proton exchange membrane
Serbian Chemical Society
{Polymeric nanocomposition for innovative functional enhancement of electrodes and proton exchange membrane in microbial fuel cell}
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