We use the free radical polymerization initiator 4,4′-azobis(cyanovaleric acid) coordinated to the open metal sites of metal-organic frameworks (MOFs) to give rise to highly uniform MOF/polymer hybrids. We demonstrate this strategy on two robust zirconium MOFs (NU-1000 and MOF-808), which are the most effective catalysts for degradation of chemical warfare nerve agents. The resulting hybrid materials maintain their hydrolytic catalytic activity and have substantially improved adhesion to polypropylene and activated carbon textile fibers, yielding highly robust MOF/polymer/textile hybrid systems. These composites are suitable for the green production of active protective clothing and filters capable of detoxifying organophosphorus warfare ag...
Herein, an approach via combination of confined porous textures and reversible deactivation radical ...
The hybrid materials that are created by supporting or incorporating polyoxometalates (POMs) into/on...
The base heterogenization is crucial for the practical applications of metal–organic frameworks (MOF...
We use the free radical polymerization initiator 4,4′-azobis(cyanovaleric acid) coordinated to the o...
Since first discovered some two decades ago, metal-organic frameworks (MOFs) have shown interesting ...
Metal-organic frameworks (MOFs) are an emerging class of porous materials that have been widely stud...
Les Metal Organic Frameworks (MOFs) sont des matériaux hybrides cristallins et poreux construits par...
Metal-organic frameworks (MOFs) are crystalline porous materials with excellent gas storage capaciti...
This research was funded by the Directorate for Planning, Technology, and Innovation (SDG PLATIN) fr...
An unprecedented mode of reactivity of Zn4Oâ based metalâ organic frameworks (MOFs) offers a strai...
The development of metal‐organic frameworks (MOFs) has had a significant impact on various fields of...
Metal–organic frameworks (MOFs) have been at the forefront of nanotechnological research for the pas...
Chapter 1: Synthetic and Design Considerations in Polymer Metal Organic Frameworks and Cages Stra...
Metal–organic frameworks (MOFs) are a new and growing area of materials with high porosity and custo...
Herein, an approach via combination of confined porous textures and reversible deactivation radical ...
Herein, an approach via combination of confined porous textures and reversible deactivation radical ...
The hybrid materials that are created by supporting or incorporating polyoxometalates (POMs) into/on...
The base heterogenization is crucial for the practical applications of metal–organic frameworks (MOF...
We use the free radical polymerization initiator 4,4′-azobis(cyanovaleric acid) coordinated to the o...
Since first discovered some two decades ago, metal-organic frameworks (MOFs) have shown interesting ...
Metal-organic frameworks (MOFs) are an emerging class of porous materials that have been widely stud...
Les Metal Organic Frameworks (MOFs) sont des matériaux hybrides cristallins et poreux construits par...
Metal-organic frameworks (MOFs) are crystalline porous materials with excellent gas storage capaciti...
This research was funded by the Directorate for Planning, Technology, and Innovation (SDG PLATIN) fr...
An unprecedented mode of reactivity of Zn4Oâ based metalâ organic frameworks (MOFs) offers a strai...
The development of metal‐organic frameworks (MOFs) has had a significant impact on various fields of...
Metal–organic frameworks (MOFs) have been at the forefront of nanotechnological research for the pas...
Chapter 1: Synthetic and Design Considerations in Polymer Metal Organic Frameworks and Cages Stra...
Metal–organic frameworks (MOFs) are a new and growing area of materials with high porosity and custo...
Herein, an approach via combination of confined porous textures and reversible deactivation radical ...
Herein, an approach via combination of confined porous textures and reversible deactivation radical ...
The hybrid materials that are created by supporting or incorporating polyoxometalates (POMs) into/on...
The base heterogenization is crucial for the practical applications of metal–organic frameworks (MOF...