Metal organic frameworks (MOFs) are porous solids that are potential high performance carbon capture materials. We have mined a hypothetical MOF database for stmctures that have exceptional low-pressure CO2 adsorption properties. We have applied the REPEAT method to generate accurate atomic charges that regenerate the ab initio electrostatic potential. We show that large scale screening at high accuracy is feasible for thousands of structures. We identify promising synthesis targets, like a simple combination of chrysene linker and vanadium inorganic unit, and examine in detail structural features that make better performing MOFs from those that would not be synthesisable. We find that, although screening large numbers of hypothetical struc...
Carbon dioxide capture from flue gas and natural gas are important industrial processes. As an energ...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
Metal organic frameworks (MOFs) have emerged as great alternatives to traditional nanoporous materia...
This work explores the use of computational methods to aid in the design of Metal Organic Frameworks...
Reducing anthropogenic carbon dioxide emissions from coal-fired power plants is an important step in...
Metal organic frameworks (MOFs) are an emerging class of microporous materials which are generating ...
The question we pose in this study is to what extent the ranking of metal organic frameworks (MOFs) ...
High-throughput computational screening of thousands of metal-organic frameworks (MOFs) have been pe...
Nanoporous metal-organic framework (MOF) materials are strong candidates for energy efficient carbon...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
High atm. CO2 levels, resulting largely from combustion of fossil fuels, and its undesirable impact ...
Metal-organic frameworks (MOFs) are a class of crystalline materials composed of metal nodes or clus...
Metal-organic frameworks (MOFs) are versatile nanoporous materials that have gained significant inte...
During the formation of metal–organic frameworks (MOFs), metal centres can coordinate with the inten...
Carbon dioxide capture from flue gas and natural gas are important industrial processes. As an energ...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
Metal organic frameworks (MOFs) have emerged as great alternatives to traditional nanoporous materia...
This work explores the use of computational methods to aid in the design of Metal Organic Frameworks...
Reducing anthropogenic carbon dioxide emissions from coal-fired power plants is an important step in...
Metal organic frameworks (MOFs) are an emerging class of microporous materials which are generating ...
The question we pose in this study is to what extent the ranking of metal organic frameworks (MOFs) ...
High-throughput computational screening of thousands of metal-organic frameworks (MOFs) have been pe...
Nanoporous metal-organic framework (MOF) materials are strong candidates for energy efficient carbon...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
High atm. CO2 levels, resulting largely from combustion of fossil fuels, and its undesirable impact ...
Metal-organic frameworks (MOFs) are a class of crystalline materials composed of metal nodes or clus...
Metal-organic frameworks (MOFs) are versatile nanoporous materials that have gained significant inte...
During the formation of metal–organic frameworks (MOFs), metal centres can coordinate with the inten...
Carbon dioxide capture from flue gas and natural gas are important industrial processes. As an energ...
We present a workflow that traces the path from the bulk structure of a crystalline material to asse...
Metal organic frameworks (MOFs) have emerged as great alternatives to traditional nanoporous materia...