Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent molecules and partially occupied or disordered atoms. This creates a major impediment to applying high-throughput computational screening to MOFs. To address this problem, we have constructed a database of MOF structures that are derived from experimental data but are immediately suitable for molecular simulations. The development of the CoRE MOF 2014 database is described in “Computation-ready, experimental metal-organic frameworks: A tool to enable high-throughput screening of nanoporous crystals” Chung, Y.G. et al., Chem. Mater. 2014, 26, 6185-6192 (DOI: 10.1021/cm502594j). The CoRE MOF 2014 database was developed through a collaboration...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
AbstractThe role of molecular simulations in (i) the structure determination of existing porous Meta...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
High-throughput computational screening of metal-organic frameworks rely on the availability of diso...
We report the generation and characterization of the most complete collection of metal–organic frame...
High-throughput computational screening of metal-organic frameworks rely on the availability of atom...
Over 14 000 porous, three-dimensional metal–organic framework structures are compiled and analyzed a...
High-throughput computational screening of metal-organic frameworks rely on the availability of atom...
Metal–organic frameworks (MOFs) are porous materials constructed from modular molecular building blo...
International audienceIn this introductory review, we give an overview of the computational chemistr...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
Metal organic frameworks (MOFs) are an emerging class of nanoporous materials that have shown promis...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
AbstractThe role of molecular simulations in (i) the structure determination of existing porous Meta...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
High-throughput computational screening of metal-organic frameworks rely on the availability of diso...
We report the generation and characterization of the most complete collection of metal–organic frame...
High-throughput computational screening of metal-organic frameworks rely on the availability of atom...
Over 14 000 porous, three-dimensional metal–organic framework structures are compiled and analyzed a...
High-throughput computational screening of metal-organic frameworks rely on the availability of atom...
Metal–organic frameworks (MOFs) are porous materials constructed from modular molecular building blo...
International audienceIn this introductory review, we give an overview of the computational chemistr...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
Metal organic frameworks (MOFs) are an emerging class of nanoporous materials that have shown promis...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
By combining metal nodes and organic linkers, an infinite number of metal organic frameworks (MOFs) ...
AbstractThe role of molecular simulations in (i) the structure determination of existing porous Meta...