Material Science
Adsorbent
100%
Organic Polymer
74%
Clathrates
60%
Flue Gas
39%
Sorbent
39%
Crystalline Material
30%
Powder
30%
Nanoparticle
30%
Ruthenium
30%
Sintering
30%
Wettability
30%
Palladium
30%
Polycondensation
30%
Desorption
30%
Single Crystal
19%
Electrostatic Interaction
19%
Gas Mixture
15%
Chemical Bonding
14%
Chemisorption
14%
Engineering
Adsorption
63%
Carbon Capture
42%
Flue Gas
39%
Carbon Dioxide Capture
39%
Hybrid Membrane
30%
Supports
30%
Porous Aromatic Framework
30%
Direct Sunlight
30%
Sintering
30%
Clathrate
30%
Nanoparticles
22%
High Surface Area
18%
Fossil Fuel
15%
Solid Material
15%
Limitations
15%
Renewable Energy
15%
Adsorption Behavior
15%
Source Point
15%
Past Decade
15%
Heat Source
15%
Amine System
15%
Starting Material
15%
Nitrogen Atom
15%
Carbon Dioxide Utilization
15%
Contact Surface
15%
Solar Energy
15%
Amine Solution
15%
Secondary Amine
15%
Aromatics
15%
Keyphrases
Palladium Recovery
30%
Crystalline Carbon
30%
Ruthenium Nanoclusters
30%
Sintering-free
30%
Aryl Thioether
30%
Palladium
30%
Cooling Practices
30%
Catch-and-release
30%
Highly Porous
30%
Amine Chemistry
30%
Efficient Recovery
15%
Hg(II) Removal
15%
Post-synthetic Transformation
15%
Adsorbent
15%
Environmentally Friendly Solutions
15%
Hg Pollution
15%
Dual-mode Strategy
15%
Energy Efficient
15%
Thioether Linkage
15%
Perfluoroaromatic
15%
Porous Organic Polymers
15%
Sodium Sulfide
15%
Precious Metals
15%
High Capacity
15%
Short Supply
15%
Porosity
15%
High Selectivity
15%