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The three dimensional (3D) carbonaceous materials with high surface area, conductivity, biocompatibility and stability are attractive for application in microbial fuel cells (MFCs), because they can facilitate extracellular electron transfer (EET) and enhance power performance. Here we prepare a 3D-3D structured anode composed of graphite fiber brush (GFB) modified with graphene oxide aerogel (GOA)...
The demand for efficient and cost-effective anode materials in microbial fuel cells (MFCs) provides the impetus to use carbon derived from solid waste to support bacterial growth and proliferation. Here we show that the municipal sludge-derived carbon (SC) with a porous structure and abundant surface functional groups is effective in improving performance of MFCs. The SC is coated on the 3-D graphite...
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