Metal-organic frameworks (MOFs) have received increased attention in recent years due to their exceptional properties and versatility. MOFs consist of metal nodes connected by organic linkers. Particularly interesting are surface-anchored films (SURMOFs), which are grown on bulk substrates. Transmission electron microscopy (TEM) is a key technique for the analysis of the structural and chemical properties of SURMOFs on the nanoscale. For TEM sample preparation, however, the SURMOF film must be detached from the bulk substrate and transferred to an electron-transparent support. This detachment process is a severe source of damage for the SURMOF film. The preparation of SURMOFs for TEM studies is thus an obstacle that has not yet been solved ...
Scanning transmission electron microscopy (STEM) at low electron energies in scanning electron micro...
Spectroscopy on metal–organic framework (MOF) films and the molecular phenomena associated to them i...
Film processing and patterning techniques are a prerequisite to fully exploit the potential of metal...
The first example of layer‐by‐layer growth of a metal–organic framework (MOF) directly on transmissi...
Metal-organic frameworks (MOFs) are crystalline porous materials with designable topology, porosity ...
SSCI-VIDE+ING+EQDInternational audienceCompletely vapor phase-based routes for the synthesis of Meta...
The film growth of the zeolitic imidazolate framework-8 on a copper-based substrate is reported for ...
Crystalline nanoporous materials are one of the most important families of complex functional materi...
One of the subclass of metal organic frameworks (MOFs), Zeolitic imidazolate frameworks (ZIFs), like...
Vapor-phase film deposition of metal-organic frameworks (MOFs) would facilitate the integration of t...
The metal-organic framework ZIF-8 has demonstrated promise for a wide range of applications, but its...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...
The synthesis of metal-organic framework (MOF) thin films has garnered significant attention during ...
The development of MOF-based technologies has been a focus point of research over the last 20 years ...
We describe the use of sulfonate-terminated self-assembled monolayers as very efficient surface-conf...
Scanning transmission electron microscopy (STEM) at low electron energies in scanning electron micro...
Spectroscopy on metal–organic framework (MOF) films and the molecular phenomena associated to them i...
Film processing and patterning techniques are a prerequisite to fully exploit the potential of metal...
The first example of layer‐by‐layer growth of a metal–organic framework (MOF) directly on transmissi...
Metal-organic frameworks (MOFs) are crystalline porous materials with designable topology, porosity ...
SSCI-VIDE+ING+EQDInternational audienceCompletely vapor phase-based routes for the synthesis of Meta...
The film growth of the zeolitic imidazolate framework-8 on a copper-based substrate is reported for ...
Crystalline nanoporous materials are one of the most important families of complex functional materi...
One of the subclass of metal organic frameworks (MOFs), Zeolitic imidazolate frameworks (ZIFs), like...
Vapor-phase film deposition of metal-organic frameworks (MOFs) would facilitate the integration of t...
The metal-organic framework ZIF-8 has demonstrated promise for a wide range of applications, but its...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...
The synthesis of metal-organic framework (MOF) thin films has garnered significant attention during ...
The development of MOF-based technologies has been a focus point of research over the last 20 years ...
We describe the use of sulfonate-terminated self-assembled monolayers as very efficient surface-conf...
Scanning transmission electron microscopy (STEM) at low electron energies in scanning electron micro...
Spectroscopy on metal–organic framework (MOF) films and the molecular phenomena associated to them i...
Film processing and patterning techniques are a prerequisite to fully exploit the potential of metal...