Metal organic frameworks (MOFs) built from a single small ligand typically have high stability, are rigid, and have syntheses that are often simple and easily scalable. However, they are normally ultra-microporous and do not have large surface areas amenable to gas separation applications. We report an ultra-microporous (3.5 and 4.8 Å pores) Ni-(4-pyridylcarboxylate)2 with a cubic framework that exhibits exceptionally high CO2/H2 selectivities (285 for 20:80 and 230 for 40:60 mixtures at 10 bar, 40°C) and working capacities (3.95 mmol/g), making it suitable for hydrogen purification under typical precombustion CO2 capture conditions (1- to 10-bar pressure swing). It exhibits facile CO2 adsorption-desorption cycling and has CO2 self-diffusiv...
Herein, we report the use of an ultramicroporous (pore size <0.7 nm) metal-organic framework (MOF), ...
Metal–organic frameworks (MOFs) have attracted significant attention as sorbents for gas separation ...
The realization of porous materials for highly selective separation of acetylene (C2H2) from various...
Selective-adsorption separation is an energy-efficient technology for the capture of acetylene (C2H2...
Uptakes of 9.2 mmol g−1 (40.5 wt %) for CO2 at 273 K/0.1 MPa and 15.23 mmol g−1 (3.07 wt %) for H2 a...
The storage and separation of C2H2 and CO2 require specific porous materials having surfaces onto wh...
The excellent breakthrough separation performance of a new microporous MOF for CO2/N-2 and CO2/CH4 g...
Capturing carbon dioxide (CO2) from flue gases with porous materials has been considered as a viable...
The strategy to functionalize water-stable metal-organic frameworks (MOFs) in order to improve their...
Selective CO2 adsorption over other small gases has been realized in an ultra-microporous metal-orga...
The amine-decorated microporous metal-organic framework CAU-1 was readily synthesized and activated ...
The synthesis of metal-organic frameworks (MOFs) and their processing into structures with tailored ...
An air-stable tetrazolate-containing framework, [ZN(2)L(2)]center dot 2DMF (NENU-520, H2L = 4-(1H-te...
Presented here is a new,ultramicroporous metal-organic framework (MOF) formulated as [Zn3L2(HCOO)(1....
An air-stable tetrazolate-containing framework, [Zn<sub>2</sub>L<sub>2</sub>]•2DMF (NENU-520, H<sub>...
Herein, we report the use of an ultramicroporous (pore size <0.7 nm) metal-organic framework (MOF), ...
Metal–organic frameworks (MOFs) have attracted significant attention as sorbents for gas separation ...
The realization of porous materials for highly selective separation of acetylene (C2H2) from various...
Selective-adsorption separation is an energy-efficient technology for the capture of acetylene (C2H2...
Uptakes of 9.2 mmol g−1 (40.5 wt %) for CO2 at 273 K/0.1 MPa and 15.23 mmol g−1 (3.07 wt %) for H2 a...
The storage and separation of C2H2 and CO2 require specific porous materials having surfaces onto wh...
The excellent breakthrough separation performance of a new microporous MOF for CO2/N-2 and CO2/CH4 g...
Capturing carbon dioxide (CO2) from flue gases with porous materials has been considered as a viable...
The strategy to functionalize water-stable metal-organic frameworks (MOFs) in order to improve their...
Selective CO2 adsorption over other small gases has been realized in an ultra-microporous metal-orga...
The amine-decorated microporous metal-organic framework CAU-1 was readily synthesized and activated ...
The synthesis of metal-organic frameworks (MOFs) and their processing into structures with tailored ...
An air-stable tetrazolate-containing framework, [ZN(2)L(2)]center dot 2DMF (NENU-520, H2L = 4-(1H-te...
Presented here is a new,ultramicroporous metal-organic framework (MOF) formulated as [Zn3L2(HCOO)(1....
An air-stable tetrazolate-containing framework, [Zn<sub>2</sub>L<sub>2</sub>]•2DMF (NENU-520, H<sub>...
Herein, we report the use of an ultramicroporous (pore size <0.7 nm) metal-organic framework (MOF), ...
Metal–organic frameworks (MOFs) have attracted significant attention as sorbents for gas separation ...
The realization of porous materials for highly selective separation of acetylene (C2H2) from various...