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Pore structure and surface biocompatibility are crucial factors for microbial fuel cell (MFC) anode performance. In this study, we demonstrated a templating strategy for design of three dimensional ordered porous carbon (3DOM-C) well-patterned macrospores (ca, 400nm) decorated carbon cloth as anode for high power density MFC. Titanium dioxide nanoparticles (TiO2) were synthesized to modify the 3DOM-C...
Microbial fuel cells (MFCs) face major hurdles for real-world applications as power generators with the exception of powering small sensor devices. Despite tremendous improvements made in the last two decades, MFCs are still too expensive to build and operate and their power output is still too small. In view of this, in recently years, intensive researches have been carried out to expand the applications...
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