Nanoporous materials such as metal–organic frameworks (MOFs) have attractive properties for selective capture of chemical warfare agents (CWAs). For obvious reasons, most research on adsorption of CWAs is performed with simulant molecules rather than real agents. This paper examines how effectively common CWA simulants mimic the adsorption properties of sarin and soman. To this end, we perform molecular simulations in the dilute adsorption limit for four simulants [dimethyl methylphosphonate (DMMP), diethyl chlorophosphate (DCP), diisopropyl fluorophosphate, and dimethyl p-nitrophenyl phosphate (DMNP)] and sarin and soman in a set of 2969 MOFs with experimentally known crystal structures. To establish the robustness of the conclusions with ...
Organophosphonates range in their toxicity and are used as pesticides, herbicides, and chemical warf...
Molecular mechanics force fields derived from first-principles calculations represent the next gener...
High-throughput computational screening is an increasingly useful approach to identify promising nan...
International audienceA series of stable MOFs containing zirconium or titanium ions as metal centers...
Chemical warfare agents (CWAs) are regarded as a critical challenge in our society. Here, we use a h...
Chemical warfare agents (CWAs) pose a serious threat to civilians and warfighters due to their high ...
Our studies are directed at determining the adsorption mechanisms and reaction pathways for the chem...
In this communication, a series of observations and data analyses coherently confirms the suitability...
Metal-organic frameworks (MOFs) are crystalline and porous materials consisting of coordination bond...
In this communication, a series of observations and data analyses coherently confirms the suitabilit...
Metal-organic frameworks are nanoporous materials that are used for various applications such as gas...
Metal organic frameworks (MOFs) are an emerging class of nanoporous materials that have shown promis...
Zr-based metal organic frameworks (MOFs) have been recently shown to be among the fastest catalysts ...
Metal–organic frameworks (MOFs) have been considered as highly promising materials for adsorption-ba...
Mesoporous metal-organic frameworks (MOFs) have been widely studied because their potencial adsorpti...
Organophosphonates range in their toxicity and are used as pesticides, herbicides, and chemical warf...
Molecular mechanics force fields derived from first-principles calculations represent the next gener...
High-throughput computational screening is an increasingly useful approach to identify promising nan...
International audienceA series of stable MOFs containing zirconium or titanium ions as metal centers...
Chemical warfare agents (CWAs) are regarded as a critical challenge in our society. Here, we use a h...
Chemical warfare agents (CWAs) pose a serious threat to civilians and warfighters due to their high ...
Our studies are directed at determining the adsorption mechanisms and reaction pathways for the chem...
In this communication, a series of observations and data analyses coherently confirms the suitability...
Metal-organic frameworks (MOFs) are crystalline and porous materials consisting of coordination bond...
In this communication, a series of observations and data analyses coherently confirms the suitabilit...
Metal-organic frameworks are nanoporous materials that are used for various applications such as gas...
Metal organic frameworks (MOFs) are an emerging class of nanoporous materials that have shown promis...
Zr-based metal organic frameworks (MOFs) have been recently shown to be among the fastest catalysts ...
Metal–organic frameworks (MOFs) have been considered as highly promising materials for adsorption-ba...
Mesoporous metal-organic frameworks (MOFs) have been widely studied because their potencial adsorpti...
Organophosphonates range in their toxicity and are used as pesticides, herbicides, and chemical warf...
Molecular mechanics force fields derived from first-principles calculations represent the next gener...
High-throughput computational screening is an increasingly useful approach to identify promising nan...