Keyphrases
Electrically Conductive
100%
Tetrathiafulvalene
100%
Hydrogen-bonded Organic Frameworks
100%
Covalent Organic Frameworks
28%
Pressed Powder Pellet
28%
Electronic Materials
14%
Metal-organic Frameworks (MOFs)
14%
Tunability
14%
Porosity
14%
Structural Characterization
14%
Nanoporous
14%
Crystallinity
14%
Covalent Bond
14%
Coordination Bond
14%
Electrical Conductivity
14%
Intermolecular Interactions
14%
Functional Porous Materials
14%
Porous Materials
14%
Recent Advancements
14%
Iodine
14%
Mixed Valence
14%
Hydrogen Bonding Interaction
14%
Reversible Interaction
14%
Intermolecular Hydrogen Bond
14%
Conductivity Values
14%
Post-synthetic
14%
Preferred Orientation
14%
Vertical Column
14%
Characterization Studies
14%
Conductive Metal-organic Frameworks
14%
Conductive Framework
14%
Crystal Network
14%
Precipitation from Solution
14%
Chemistry
Tetrathiafulvalene
100%
Hydrogen-Bonded Organic Framework
100%
Porosity
57%
Metal Organic Framework
28%
Mixed Valence
14%
Nanoporosity
14%
Covalent Modification
14%
Hydrogen Bonding
14%
Crystallinity
14%
electronics
14%
Electrical Conductivity
14%
dimer
14%
Intermolecular Force
14%
Engineering
Conductive
100%
Porosity
100%
Covalent Organic Framework
50%
Covalent
25%
Crystallinity
25%
Preferred Orientation
25%
Crystalline Network
25%
Electrical Conductivity
25%
Material Science
Hydrogen-Bonded Organic Framework
100%
Metal-Organic Framework
28%
Covalent Organic Framework
28%
Electronic Materials
14%
Covalent Modification
14%
Hydrogen Bonding
14%
Electrical Conductivity
14%
Chemical Engineering
Metal-Organic Frameworks
100%
Dimer
50%