During the formation of metal–organic frameworks (MOFs), metal centres can coordinate with the intended organic linkers, but also with solvent molecules. In this case, subsequent activation by removal of the solvent molecules creates unsaturated ‘open’ metal sites known to have a strong affinity for CO2 molecules, but their interactions are still poorly understood. Common force fields typically underestimate by as much as two orders of magnitude the adsorption of CO2 in open-site Mg-MOF-74, which has emerged as a promising MOF for CO2 capture. Here we present a systematic procedure to generate force fields using high-level quantum chemical calculations. Monte Carlo simulations based on an ab initio force field generated for CO2 in Mg-MOF-74...
We present accurate force fields developed from density functional theory (DFT) calculations with pe...
We present accurate force fields developed from density functional theory (DFT) calculations with pe...
Metal organic frameworks (MOFs) are porous solids that are potential high performance carbon capture...
Metal-organic frameworks (MOFs) are versatile nanoporous materials that have gained significant inte...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
Metal-organic frameworks (MOFs), a new class of porous solids comprised of metal-containing nodes li...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
This work explores the use of computational methods to aid in the design of Metal Organic Frameworks...
Using density functional theory with a van der Waals-corrected functional, we elucidate how CO 2 bin...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
We present accurate force fields developed from density functional theory (DFT) calculations with pe...
We present accurate force fields developed from density functional theory (DFT) calculations with pe...
Metal organic frameworks (MOFs) are porous solids that are potential high performance carbon capture...
Metal-organic frameworks (MOFs) are versatile nanoporous materials that have gained significant inte...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
On the short term, carbon capture is a viable solution to reduce human-induced CO2 emissions, which ...
Metal-organic frameworks (MOFs), a new class of porous solids comprised of metal-containing nodes li...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
This work explores the use of computational methods to aid in the design of Metal Organic Frameworks...
Using density functional theory with a van der Waals-corrected functional, we elucidate how CO 2 bin...
Carbon dioxide capture from processes is one of the strategies adopted to decrease anthropogenic gre...
We present accurate force fields developed from density functional theory (DFT) calculations with pe...
We present accurate force fields developed from density functional theory (DFT) calculations with pe...
Metal organic frameworks (MOFs) are porous solids that are potential high performance carbon capture...