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- W3044011982 startingPage "141225" @default.
- W3044011982 abstract "The application of graphene (Gr) to microbial fuel cells (MFCs) and microbial electrolysis cell (MECs) is considered a very promising approach in terms of enhancing their performance. The superior Gr properties of high electrical and thermal conductivities, along with: superior specific surface area, high electron mobility, and mechanical strength, are the key features that endorse this. Factors impeding the advancement of a microbial fuel cell into commercialization involve primarily the cost of their components, and their production on a small scale. Gr with such outstanding characteristics can help mitigate these challenges, when used as electrode material. The application of Gr as an anode material improves the efficiency of electron transfer and bacterial attachment. When used as a cathode material, it supports the oxygen reduction reaction. This investigation, presents a thorough analysis of the feasibility of Gr as an electrode material in both MFC and MEC applications - based on experimental results from the investigation. Current technological advancements in the implementation of Gr in MFC and MEC are also highlighted in this review. To summarise, the investigation exposes critical issues impeding the advancement of microbial fuel cells, and proposes possible solutions to mitigate these challenges. • Progress of the graphene in MFC is summarized. • Progress of the graphene in MEC is summarized. • Graphene at anode improves the electron transfer and cell attachment. • Graphene at cathode supports the reduction reaction." @default.
- W3044011982 created "2020-07-29" @default.
- W3044011982 creator A5005792337 @default.
- W3044011982 creator A5029120429 @default.
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- W3044011982 creator A5056743382 @default.
- W3044011982 creator A5057693854 @default.
- W3044011982 creator A5086816810 @default.
- W3044011982 date "2020-12-01" @default.
- W3044011982 modified "2023-10-17" @default.
- W3044011982 title "Recent progress of graphene based nanomaterials in bioelectrochemical systems" @default.
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