International audienceCovalent Organic Frameworks RIO-13, RIO-12, RIO-11, and RIO-11m were investigated towards their CO2 capture properties by thermogravimetric analysis at 1 atm and 40 °C. These microporous COFs bear in common the azine backbone composed of hydroxy-benzene moieties but differ in the relative number of hydroxyl groups present in each material. Thus, their sorption capacities were studied as a function of their textural and chemical properties. Their maximum CO2 uptake values showed a strong correlation with an increasing specific surface area, but that property alone could not fully explain the CO2 uptake data. Hence, the specific CO2 uptake, combined with DFT calculations, indicated that the relative number of hydroxyl gr...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Tailorable sorption properties at the molecular level are key for efficient carbon capture and stora...
Two new three-dimensional porous Zn(II)-based metal-organic frameworks, containing azine-functionali...
AbstractEnhanced CO2 Capture in Metal-Organic and Covalent-Organic FrameworksbyRobinson W FlaigDocto...
As an emerging class of porous crystalline materials, covalent organic frameworks (COFs) are excelle...
Covalent organic frameworks (COFs) are porous crystalline organic polymers which have been the subje...
CO2 is a prominent example for an exhaust gas, and it is known for its high impact on global warming...
An imine-based nitrogen-rich covalent-organic framework (COF) was successfully synthesized using two...
Porous nitrogen-rich covalent organic frameworks (COFs) are most challenging materials for selective...
Using computer-aided design, several interpenetrated imine-linked 3D covalent organic frameworks wit...
Tailorable sorption properties at the molecular level are key for efficient carbon capture and stora...
This work aims to synthesize and characterize the Metal-organic frameworks (MOFs): MIP-202, MOF-801,...
The search for new efficient physisorbents for gas capture and storage is the objective of numerous ...
The work herein describes an investigation of metal-organic frameworks as adsorbents for selectively...
This thesis reports an investigation into metal-organic frameworks (MOFs) as candidate solid-state c...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Tailorable sorption properties at the molecular level are key for efficient carbon capture and stora...
Two new three-dimensional porous Zn(II)-based metal-organic frameworks, containing azine-functionali...
AbstractEnhanced CO2 Capture in Metal-Organic and Covalent-Organic FrameworksbyRobinson W FlaigDocto...
As an emerging class of porous crystalline materials, covalent organic frameworks (COFs) are excelle...
Covalent organic frameworks (COFs) are porous crystalline organic polymers which have been the subje...
CO2 is a prominent example for an exhaust gas, and it is known for its high impact on global warming...
An imine-based nitrogen-rich covalent-organic framework (COF) was successfully synthesized using two...
Porous nitrogen-rich covalent organic frameworks (COFs) are most challenging materials for selective...
Using computer-aided design, several interpenetrated imine-linked 3D covalent organic frameworks wit...
Tailorable sorption properties at the molecular level are key for efficient carbon capture and stora...
This work aims to synthesize and characterize the Metal-organic frameworks (MOFs): MIP-202, MOF-801,...
The search for new efficient physisorbents for gas capture and storage is the objective of numerous ...
The work herein describes an investigation of metal-organic frameworks as adsorbents for selectively...
This thesis reports an investigation into metal-organic frameworks (MOFs) as candidate solid-state c...
Porous organic polymers have come into focus recently for the capture and storage of postcombusted C...
Tailorable sorption properties at the molecular level are key for efficient carbon capture and stora...
Two new three-dimensional porous Zn(II)-based metal-organic frameworks, containing azine-functionali...