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Development of high performance micro DMFC and a DMFC stack
Guoqiang Lu
,
Chao Yang Wang
Mechanical Engineering
Research output
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Chapter in Book/Report/Conference proceeding
›
Conference contribution
1
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Keyphrases
High Performance
100%
Direct Methanol Fuel Cell Stack
100%
Micro Direct Methanol Fuel Cell (μDMFC)
100%
Oxygen Transport
50%
Air-breathing
50%
Maximum Power Density
50%
Silicon Wafer
50%
Room Temperature
25%
Steady State
25%
Further Development
25%
Water Transport
25%
Contact Resistance
25%
Atmospheric Pressure
25%
Flow Channel
25%
Active Area
25%
Maximum Output Power
25%
Power Density
25%
Methanol Crossover
25%
Anode Flooding
25%
Membrane Electrode Assembly
25%
Stainless Steel Plate
25%
Air-breathing Cathode
25%
Photochemical Etching
25%
High Power Applications
25%
Power Output
25%
Thick Layer
25%
Compress
25%
Electrochemical Characterization
25%
Silicon-based
25%
Pure Methanol
25%
Bipolar Plate
25%
Portable Applications
25%
Water Management Techniques
25%
Passive Direct Methanol Fuel Cell
25%
Etching Technology
25%
Mass Transport Phenomena
25%
Engineering
Direct Methanol Fuel Cell
100%
Fuel Cell Stack
100%
Breathing
33%
Maximum Power Density
22%
Silicon Wafer
22%
Stainless Steel
11%
Room Temperature
11%
Power Density
11%
Atmospheric Pressure
11%
Transport Phenomena
11%
Mass Transfer
11%
Active Area
11%
Maximum Output Power
11%
Membrane Electrode Assembly
11%
Steel Plate
11%
Flow Channel
11%
Methanol Crossover
11%
Output Power
11%
Water Management
11%
Thick Layer
11%
Pure Methanol
11%
Bipolar Plate
11%
Portable Application
11%
State Output
11%
Material Science
Methanol Fuels
100%
Density
37%
Cathode
25%
Silicon Wafer
25%
Silicon
12%
Stainless Steel
12%
Contact Resistance
12%
Transport Phenomena
12%
Physics
Fuel Cell
100%
Room Temperature
12%
Transport Phenomena
12%
Steady State
12%
Atmospheric Pressure
12%
Chemical Engineering
Methanol
100%
Mass Transfer
10%