We report the first example of crystallographic observation of acetylene binding to −NO2 groups in a metal–organic framework (MOF). Functionalization of MFM-102 with −NO2 groups on phenyl groups leads to a 15% reduction in BET surface area in MFM-102-NO2. However, this is coupled to a 28% increase in acetylene adsorption to 192 cm3 g–1 at 298 K and 1 bar, comparable to other leading porous materials. Neutron diffraction and inelastic scattering experiments reveal the role of −NO2 groups, in cooperation with open metal sites, in the binding of acetylene in MFM-102-NO2
ABSTRACT: A synthetic route to create highly exposed, monovalent metal cations within the linkers of...
The adsorption mechanism of ethane, ethylene and acetylene (C<sub>2</sub>H<sub>n</sub>; n = 2, 4, 6)...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
We report the first example of crystallographic observation of acetylene binding to −NO2 groups in a...
Porous materials that can undergo pore‐structure adjustment to better accommodate specific molecules...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
Flexible metal–organic frameworks (MOFs) are one kind of stimuli-responsive materials that exhibit r...
Highly selective separation and/or purification of acetylene from various gas mixtures is a relevant...
Chemical equcation Presented On the metal: Open metal sites within isostructural [M2(DHTP)] metal-or...
Highly selective separation and/or purification of acetylene from various gas mixtures is a relevant...
An in situ approach has been undertaken to synthesize a series of metal–organic frameworks (MOFs) wi...
The realization of porous materials for highly selective separation of acetylene (C2H2) from various...
Although supramolecular isomerism in metal–organic frameworks (MOFs) would offer a favorable platfor...
The adsorption mechanism of ethane, ethylene, and acetylene (C<sub>2</sub>H<sub><i>n</i></sub>; <i>n...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
ABSTRACT: A synthetic route to create highly exposed, monovalent metal cations within the linkers of...
The adsorption mechanism of ethane, ethylene and acetylene (C<sub>2</sub>H<sub>n</sub>; n = 2, 4, 6)...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
We report the first example of crystallographic observation of acetylene binding to −NO2 groups in a...
Porous materials that can undergo pore‐structure adjustment to better accommodate specific molecules...
Understanding the mechanism of gas-sorbent interactions is of fundamental importance for the design ...
Flexible metal–organic frameworks (MOFs) are one kind of stimuli-responsive materials that exhibit r...
Highly selective separation and/or purification of acetylene from various gas mixtures is a relevant...
Chemical equcation Presented On the metal: Open metal sites within isostructural [M2(DHTP)] metal-or...
Highly selective separation and/or purification of acetylene from various gas mixtures is a relevant...
An in situ approach has been undertaken to synthesize a series of metal–organic frameworks (MOFs) wi...
The realization of porous materials for highly selective separation of acetylene (C2H2) from various...
Although supramolecular isomerism in metal–organic frameworks (MOFs) would offer a favorable platfor...
The adsorption mechanism of ethane, ethylene, and acetylene (C<sub>2</sub>H<sub><i>n</i></sub>; <i>n...
In order to develop new porous materials for applications in gas separations such as natural gas upg...
ABSTRACT: A synthetic route to create highly exposed, monovalent metal cations within the linkers of...
The adsorption mechanism of ethane, ethylene and acetylene (C<sub>2</sub>H<sub>n</sub>; n = 2, 4, 6)...
In order to develop new porous materials for applications in gas separations such as natural gas upg...