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Metal-organic frameworks as O
2
-selective adsorbents for air separations
David E. Jaramillo
, Adam Jaffe
,
Benjamin E.R. Snyder
, Alex Smith
, Eric Taw
, Rachel C. Rohde
, Matthew N. Dods
, William DeSnoo
, Katie R. Meihaus
, T. David Harris
, Jeffrey B. Neaton
, Jeffrey R. Long
Research output
:
Contribution to journal
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Article
›
peer-review
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2
-selective adsorbents for air separations'. Together they form a unique fingerprint.
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Keyphrases
Metal-organic Frameworks (MOFs)
100%
Selective Adsorbent
100%
Air Separation
100%
O2 Adsorption
33%
Adsorption
16%
Material Properties
16%
Biological Systems
16%
O2 Binding
16%
Density Functional Theory
16%
Molecular Systems
16%
Promising Areas
16%
Thermodynamic Parameters
16%
Free Energy
16%
Computational Approach
16%
G-value
16%
Material Design
16%
Periodic Boundary Conditions
16%
Material Evaluation
16%
Climate Change
16%
Widespread Adoption
16%
O2 Production
16%
Decentralization
16%
Nearly Optimal
16%
Concept Evaluation
16%
Low Capacity
16%
Energy Consumption
16%
Traditional Assessment
16%
Defined Conditions
16%
Framework System
16%
Energy-intensive
16%
Future Materials
16%
Material Limits
16%
Adsorptive
16%
Adsorption Enthalpy
16%
Regenerative Energy
16%
Cryogenic Distillation
16%
Engineering
Realization
100%
Metrics
50%
Periodic Boundary
50%
Proof-of-Concept
50%
Thermodynamic Parameter
50%
Climate Change
50%
Detailed Evaluation
50%
Cryogenic Distillation
50%
Climatic Change
50%
Boundary Condition
50%
Material Science
Metal-Organic Framework
100%
Adsorbent
100%
Density
16%
Materials Design
16%
Materials Property
16%
Chemical Engineering
Metal-Organic Frameworks
100%
Enthalpy
16%
Cryogenics
16%
Free Energy
16%