Amorphous metal–organic frameworks (MOFs) are an emerging class of materials. However, their structural characterisation represents a significant challenge. Fe BTC, and the commercial equivalent Basolite® F300, are MOFs with incredibly diverse catalytic ability, yet their disordered structures remain poorly understood. Here, we use advanced electron microscopy to identify a nanocomposite structure of Fe BTC where nanocrystalline domains are embedded within an amorphous matrix, whilst synchrotron total scattering measurements reveal the extent of local atomic order within Fe BTC. We use a polymerisation-based algorithm to generate an atomistic structure for Fe-BTC, the first example of this methodology applied to the amorphous MOF field outs...
Because of their high tunability and surface area, metal-organic frameworks (MOFs) show great promis...
Crystalline nanoporous materials are one of the most important families of complex functional materi...
Stabilizing catalytic iron-oxo-clusters within nanoporous metal–organic frameworks (MOFs) is a power...
Amorphous metal-organic frameworks (MOFs) are an emerging class of materials. However, their structu...
Amorphous metal−organic frameworks (aMOFs) are a class of disordered framework materials with a defi...
International audienceMetal–organic frameworks (MOFs) have been recently explored as crystalline sol...
International audienceThere is an increasing interest in the amorphous states of metal-organic frame...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
This Thesis explores the role of structural defects and disorder and their relationship to experimen...
ZIF-4, a metal-organic framework (MOF) with a zeolitic structure, undergoes a crystal-amorphous tran...
Probing the atomic structure of materials displaying a lack of long-range order has been a continuou...
Characterization of nanoscale changes in the atomic structure of amorphous materials is a profound c...
The local environment of iron in FeBTC, a metal organic framework commercially known as Basolite F30...
Probing the atomic structure of materials displaying a lack of long-range order has been a continuou...
Because of their high tunability and surface area, metal-organic frameworks (MOFs) show great promis...
Because of their high tunability and surface area, metal-organic frameworks (MOFs) show great promis...
Crystalline nanoporous materials are one of the most important families of complex functional materi...
Stabilizing catalytic iron-oxo-clusters within nanoporous metal–organic frameworks (MOFs) is a power...
Amorphous metal-organic frameworks (MOFs) are an emerging class of materials. However, their structu...
Amorphous metal−organic frameworks (aMOFs) are a class of disordered framework materials with a defi...
International audienceMetal–organic frameworks (MOFs) have been recently explored as crystalline sol...
International audienceThere is an increasing interest in the amorphous states of metal-organic frame...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
This Thesis explores the role of structural defects and disorder and their relationship to experimen...
ZIF-4, a metal-organic framework (MOF) with a zeolitic structure, undergoes a crystal-amorphous tran...
Probing the atomic structure of materials displaying a lack of long-range order has been a continuou...
Characterization of nanoscale changes in the atomic structure of amorphous materials is a profound c...
The local environment of iron in FeBTC, a metal organic framework commercially known as Basolite F30...
Probing the atomic structure of materials displaying a lack of long-range order has been a continuou...
Because of their high tunability and surface area, metal-organic frameworks (MOFs) show great promis...
Because of their high tunability and surface area, metal-organic frameworks (MOFs) show great promis...
Crystalline nanoporous materials are one of the most important families of complex functional materi...
Stabilizing catalytic iron-oxo-clusters within nanoporous metal–organic frameworks (MOFs) is a power...