Metal-organic frameworks (MOFs) are promising gas adsorbents. Knowledge of the behavior of gas molecules adsorbed inside MOFs is crucial for advancing MOFs as gas capture materials. However, their behavior is not always well understood. In this work, carbon dioxide (CO2) adsorption in the microporous α-Zn3(HCOO)6 MOF was investigated. The behavior of the CO2 molecules inside the MOF was comprehensively studied by a combination of single-crystal X-ray diffraction (SCXRD) and multinuclear solid-state magnetic resonance spectroscopy. The locations of CO2 molecules adsorbed inside the channels of the framework were accurately determined using SCXRD, and the framework hydrogens from the formate linkers were found to act as adsorption sites. 67Zn...
The observation of encapsulated carbon dioxide (CO2) molecule is one of the important issues to unde...
oncerns about global warming has prompted research at the academic and industrial level to reduce an...
Author Institution: Department of Physics and Astronomy, Oberlin College; Oberlin, OH 44074; Depart...
Metal-organic frameworks (MOFs) are promising gas adsorbents. Knowledge of the behavior of gas molec...
Metal-organic frameworks (MOFs) are a class of microporous materials with lots of unique properties ...
The MOF with the encapsulated CO2 molecule shows that the CO2 molecule is ligated to the unsaturated...
Metal–organic frameworks (MOFs) are promising materials for greener carbon monoxide (CO) capture and...
DoctorSince CO2 is believed to cause global warming and climate change, the separation and storage o...
Solid-state nuclear magnetic resonance (SSNMR) methods have been routinely used for the characteriza...
Knowledge of adsorbed gas dynamics within microporous solids is crucial for the design of more effic...
Solid-state nuclear magnetic resonance (SSNMR) methods have been routinely used for the characteriza...
Analysis of the CO2 adsorption properties of a well-known series of metal–organic frameworks M2(dobd...
Here, we report the preferential CO2 adsorption on a new zinc-based porous 3D framework compound, [Z...
High atm. CO2 levels, resulting largely from combustion of fossil fuels, and its undesirable impact ...
This thesis reports an investigation into metal-organic frameworks (MOFs) as candidate solid-state c...
The observation of encapsulated carbon dioxide (CO2) molecule is one of the important issues to unde...
oncerns about global warming has prompted research at the academic and industrial level to reduce an...
Author Institution: Department of Physics and Astronomy, Oberlin College; Oberlin, OH 44074; Depart...
Metal-organic frameworks (MOFs) are promising gas adsorbents. Knowledge of the behavior of gas molec...
Metal-organic frameworks (MOFs) are a class of microporous materials with lots of unique properties ...
The MOF with the encapsulated CO2 molecule shows that the CO2 molecule is ligated to the unsaturated...
Metal–organic frameworks (MOFs) are promising materials for greener carbon monoxide (CO) capture and...
DoctorSince CO2 is believed to cause global warming and climate change, the separation and storage o...
Solid-state nuclear magnetic resonance (SSNMR) methods have been routinely used for the characteriza...
Knowledge of adsorbed gas dynamics within microporous solids is crucial for the design of more effic...
Solid-state nuclear magnetic resonance (SSNMR) methods have been routinely used for the characteriza...
Analysis of the CO2 adsorption properties of a well-known series of metal–organic frameworks M2(dobd...
Here, we report the preferential CO2 adsorption on a new zinc-based porous 3D framework compound, [Z...
High atm. CO2 levels, resulting largely from combustion of fossil fuels, and its undesirable impact ...
This thesis reports an investigation into metal-organic frameworks (MOFs) as candidate solid-state c...
The observation of encapsulated carbon dioxide (CO2) molecule is one of the important issues to unde...
oncerns about global warming has prompted research at the academic and industrial level to reduce an...
Author Institution: Department of Physics and Astronomy, Oberlin College; Oberlin, OH 44074; Depart...