Metal–organic frameworks (MOFs) are an intriguing class of porous crystalline inorganic–organic hybrid materials. The fabrication of oriented, crystalline thin film of MOFs is expected to open novel avenues to traditional applications and to serve myriad advanced technologies. Here, a facile spray-assisted miscible liquid–liquid interface (MLLI) synthetic strategy is carried out and reported under mild condition that utilizes miscible interface for the rapid and controllable fabrication of large-area free-standing MOF thin films. The methodology can employ various metal nodes and organic ligands to yield various high quality lamellar/granulous MOF thin films at MLLI, which indicates the universality of the MLLI strategy
The preparation of crystalline, ordered thin films of metal–organic frameworks (MOFs) will be a crit...
Metal–organic frameworks (MOFs) could be utilized for a wide range of applications such as sorption,...
We report a general method for the synthesis of free-standing, self-assembled MOF monolayers (SAMMs)...
Metal–organic framework (MOF) thin films represent a milestone in the development of future technolo...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...
Here, we report a new and advanced method for the fabrication of highly oriented/polycrystalline met...
Metal-organic frameworks are crystalline porous materials composed of metal ion nodes interconnected...
Currently many methods used for the synthesis of MOF thin films are modifications of the solvotherma...
Controlled on-surface film growth of porous and crystalline frameworks is a central prerequisite for...
In this work, the fabrication of ultrathin films containing the metal organic framework (MOF) Fe-MIL...
A new route to layer-by-layer assembly of metal-organic framework thin films affords highly ordered ...
Metal-organic frameworks (MOFs) are crystalline nanoporous materials that consist of inorganic metal...
Materials processing, and thin-film deposition in particular, is decisive in the implementation of f...
Thin films can integrate the versatility and great potential found in the emerging field of metal–or...
Metal–organic frameworks (MOFs) possess exciting properties, which can be tailored by rational mater...
The preparation of crystalline, ordered thin films of metal–organic frameworks (MOFs) will be a crit...
Metal–organic frameworks (MOFs) could be utilized for a wide range of applications such as sorption,...
We report a general method for the synthesis of free-standing, self-assembled MOF monolayers (SAMMs)...
Metal–organic framework (MOF) thin films represent a milestone in the development of future technolo...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...
Here, we report a new and advanced method for the fabrication of highly oriented/polycrystalline met...
Metal-organic frameworks are crystalline porous materials composed of metal ion nodes interconnected...
Currently many methods used for the synthesis of MOF thin films are modifications of the solvotherma...
Controlled on-surface film growth of porous and crystalline frameworks is a central prerequisite for...
In this work, the fabrication of ultrathin films containing the metal organic framework (MOF) Fe-MIL...
A new route to layer-by-layer assembly of metal-organic framework thin films affords highly ordered ...
Metal-organic frameworks (MOFs) are crystalline nanoporous materials that consist of inorganic metal...
Materials processing, and thin-film deposition in particular, is decisive in the implementation of f...
Thin films can integrate the versatility and great potential found in the emerging field of metal–or...
Metal–organic frameworks (MOFs) possess exciting properties, which can be tailored by rational mater...
The preparation of crystalline, ordered thin films of metal–organic frameworks (MOFs) will be a crit...
Metal–organic frameworks (MOFs) could be utilized for a wide range of applications such as sorption,...
We report a general method for the synthesis of free-standing, self-assembled MOF monolayers (SAMMs)...