Engineering
Fabrication
100%
Microbial Fuel Cell
100%
Phase-Inversion
100%
Inversion Method
100%
Diffusion Layer
100%
Activated Carbon
100%
Binders
75%
Water
75%
Room Temperature
50%
Polydimethylsiloxane
50%
Catalyst
50%
Enzymatic Activity
25%
One Step
25%
Heat Treatment
25%
Stainless Steel
25%
Oxygen Reduction Reaction
25%
Power Density
25%
Maximum Power Density
25%
Current Collector
25%
Gas Fuel Manufacture
25%
Performance
25%
Substrates
25%
Meshes
25%
INIS
cathodes
100%
activated carbon
100%
air
100%
fuel cells
100%
fabrication
100%
poly(vinylidene fluoride)
100%
diffusion layer
36%
water
27%
leakage
27%
binders
27%
catalysts
18%
temperature range 0273-0400 k
18%
power density
18%
polytetrafluoroethylene
18%
performance
9%
comparative evaluations
9%
waste water
9%
oxygen
9%
cost
9%
power
9%
substrates
9%
reduction
9%
heat treatments
9%
stainless steels
9%
acetates
9%
Chemical Engineering
Activated Carbon
100%
Microbial Fuel Cell
100%
Water
75%
Polytetrafluoroethylene
50%
Polydimethylsiloxane
50%
Temperature
50%
Oxygen
25%
Material Science
Cathode
100%
Air
100%
Binder
27%
Fuel
27%
Poly(Dimethylsiloxane)
18%
Catalyst
18%
Density
18%
Temperature
18%
Heat Treatment
9%
Material
9%
Catalyst Activity
9%
Stainless Steel
9%