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Shuang Ma Andersen Research CV
Shuang Ma Andersen Teaching CV
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Shuang Ma Andersen
Ph.D. in Chemical Engineering
SDU Chemical Engineering
Institut for Grøn Teknologi
https://orcid.org/0000-0003-1474-0395
Telefon
+4565509186
E-mail
mashuigt.sdudk
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Teknik og materialevidenskab
Proton exchange membrane fuel cells (PEMFC)
100%
Electrocatalysts
87%
Catalysts
80%
Platinum
72%
Electrodes
71%
Ionomers
60%
Carbon
55%
Catalyst supports
53%
Nanoparticles
42%
Dissolution
37%
Durability
36%
Fuel cells
32%
Recycling
31%
Polyols
28%
Acids
23%
Degradation
23%
Membranes
21%
Carbon nanotubes
20%
Microwaves
20%
X ray photoelectron spectroscopy
19%
Carbon nanofibers
18%
Cathodes
17%
Adsorption
17%
Protons
17%
Oxides
16%
Particle size
15%
Oxygen evolution reaction
15%
Iridium
14%
Ostwald ripening
13%
Polymers
11%
Graphite
9%
Electrolytes
9%
Microwave irradiation
8%
Oxygen
8%
Tin dioxide
8%
Recovery
7%
Surface chemistry
7%
Corrosion
7%
Metal recovery
7%
Ions
7%
Nanocrystals
7%
Transition metals
7%
Surface treatment
7%
Thermodynamic stability
6%
Ion exchange
6%
Antioxidants
6%
Cell membranes
6%
Energy storage
6%
Microscopic examination
6%
Anodes
6%
Fysik og astronomi
fuel cells
84%
electrocatalysts
65%
membranes
57%
catalysts
54%
protons
34%
electrodes
31%
durability
29%
carbon
27%
degradation
25%
platinum
22%
recycling
21%
dissolving
19%
sulfonic acid
16%
electrolytes
15%
cathodes
14%
cycles
13%
dehydration
12%
oxides
12%
oxygen
11%
polymers
11%
methyl alcohol
10%
synthesis
10%
swelling
10%
photoelectron spectroscopy
9%
contamination
8%
x rays
8%
noble metals
8%
rotating disks
7%
performance
7%
cell cathodes
7%
glassy carbon
7%
nanoparticles
7%
acids
7%
corrosion
6%
antioxidants
6%
cells
6%
spent fuels
6%
anhydrides
6%
electrochemical cells
6%
carbon nanotubes
6%
iridium
6%
oxidation
5%
thermal stability
5%
composite materials
5%
dioxides
5%
tin
5%
alcohols
5%
Kemiske forbindelser
Ionomer
48%
Behavior as Electrode
47%
Catalyst
40%
Platinum
35%
Platinum Nanoparticle
33%
Recycling
33%
Dissolution
32%
Carbon Atom
31%
Surface Area
25%
Polyol
17%
Ammonium Hexachloroplatinate
16%
Platinum-Group Metal
14%
Microwave
11%
Dioxygen
11%
Oxide
10%
Carbon Nanofibre
10%
Nanoparticle
9%
Cathode
9%
Ostwald Ripening
9%
Sulfonic Acid
9%
Surface
9%
Corrosion
8%
Reduction
8%
X-Ray Photoelectron Spectroscopy
8%
Multi Walled Nanotube
8%
Ion Microscopy
7%
Acid
7%
Microwave Assisted Synthesis
7%
Tin Dioxide
6%
Ink
5%
Surface Chemistry
5%
Silicon Carbide
5%
Microwave Irradiation
5%
Anode
5%
Adsorption Behavior
5%
Lamination
5%
Adsorption
5%
Polyol Method
5%