Difference between revisions of "Team:ManhattanCol Bronx"

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<p><font face="Tahoma" size="+3" color="#088A08">E.coli Gone Electric: Glucose Oxidase Based Anodic Catalyst Mediated by Gold Nanowires for High Performance Microbial Fuel Cell</h2>
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<p><font face="Tahoma" size="+1" color="#0B1907">Our goal is to design an environmentally friendly, and efficient bioanode that will maximize electron shuttling using various glucose oxidase mutants derived from aspergillus niger. Additionally, we will try to take MtrCAB operons from shewanella to make E.coli electric in the presence of an anode with nanowires adhered to it  which will connect to the shewanella nanowires. Increasing the efficiency of the overall biofuel cell will allow for many advances in the field of medicine, and technology. Biofuel cells can be used as portable power sources for miniaturized electronics, as well as self power implanted medical devices to improve health. For future research we hope to make this biofuel cell solar, cost effective, and to make clean energy a reality for all. </p>
 
<p><font face="Tahoma" size="+1" color="#0B1907">Our goal is to design an environmentally friendly, and efficient bioanode that will maximize electron shuttling using various glucose oxidase mutants derived from aspergillus niger. Additionally, we will try to take MtrCAB operons from shewanella to make E.coli electric in the presence of an anode with nanowires adhered to it  which will connect to the shewanella nanowires. Increasing the efficiency of the overall biofuel cell will allow for many advances in the field of medicine, and technology. Biofuel cells can be used as portable power sources for miniaturized electronics, as well as self power implanted medical devices to improve health. For future research we hope to make this biofuel cell solar, cost effective, and to make clean energy a reality for all. </p>
 
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Revision as of 15:28, 9 October 2017