We present a comprehensive investigation of the CO2 adsorption properties of an isostructural series of metal\u2013organic frameworks, M-BTT (M = Cr, Mn, Fe, Cu; BTT3 12 = 1,3,5-benzenetristetrazolate), which exhibit a high density of open metal sites capable of polarizing and binding guest molecules. Coupling gas adsorption measurements with in situ neutron and X-ray diffraction experiments provides molecular-level insight into the adsorption process and enables rationalization of the observed adsorption isotherms. In particular, structural data confirms that the high initial isosteric heats of CO2 adsorption for the series are directly correlated with the presence of open metal sites and further reveals the positions and orientations of a...
Using van der Waals-corrected density functional theory and a local chemical bond analysis, we study...
The incorporation of Lewis base sites and open metal cation sites into metal-organic frameworks (MOF...
International audienceThe interaction of CO2 with the porous metal-organic framework material MIL-53...
We present a comprehensive investigation of the CO2 adsorption properties of an isostructural series...
Analysis of the CO2 adsorption properties of a well-known series of metal–organic frameworks M2(dobd...
International audienceUsing van der Waals-corrected density functional theory and a local chemical b...
We report a detailed study of CO<sub>2</sub> adsorption in two important metal−organic framework (MO...
High atm. CO2 levels, resulting largely from combustion of fossil fuels, and its undesirable impact ...
A first principles study of CO₂ adsorption is presented for a group of metal–organic frameworks (MOF...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...
Simulations of CO2 and H2 sorption were performed in UTSA-20, a metal–organic framework (MOF) having...
Metal-organic frameworks (MOFs) constitute a class of three-dimensional porous materials that have s...
An computational study using density functional theory and grand-canonical Monte Carlo simulation th...
We use density functional theory calculations with van der Waals corrections to study the role of di...
Using van der Waals-corrected density functional theory and a local chemical bond analysis, we study...
The incorporation of Lewis base sites and open metal cation sites into metal-organic frameworks (MOF...
International audienceThe interaction of CO2 with the porous metal-organic framework material MIL-53...
We present a comprehensive investigation of the CO2 adsorption properties of an isostructural series...
Analysis of the CO2 adsorption properties of a well-known series of metal–organic frameworks M2(dobd...
International audienceUsing van der Waals-corrected density functional theory and a local chemical b...
We report a detailed study of CO<sub>2</sub> adsorption in two important metal−organic framework (MO...
High atm. CO2 levels, resulting largely from combustion of fossil fuels, and its undesirable impact ...
A first principles study of CO₂ adsorption is presented for a group of metal–organic frameworks (MOF...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...
Four isostructural CPO‐54‐M metal‐organic frameworks based on the larger organic linker 1,5‐dihydrox...
Simulations of CO2 and H2 sorption were performed in UTSA-20, a metal–organic framework (MOF) having...
Metal-organic frameworks (MOFs) constitute a class of three-dimensional porous materials that have s...
An computational study using density functional theory and grand-canonical Monte Carlo simulation th...
We use density functional theory calculations with van der Waals corrections to study the role of di...
Using van der Waals-corrected density functional theory and a local chemical bond analysis, we study...
The incorporation of Lewis base sites and open metal cation sites into metal-organic frameworks (MOF...
International audienceThe interaction of CO2 with the porous metal-organic framework material MIL-53...