Surface-Mounted Metal–Organic Frameworks (SURMOFs) are promising materials with a wide range of applications and increasing interest in different technological fields. The use of SURMOFs as both the active and passive tail in electronic devices is one of the most exciting possibilities for such a hybrid material. In such a context, the adhesion, roughness, and crystallinity control of SURMOF thin films are challenging and have limited their application in new functional electronic devices. Self-assembled monolayers (SAMs), which ensure the effective attachment of the SURMOF onto substrates, also play a critical role that can profoundly affect the SURMOF growth mechanism. Herein, we demonstrate that the deterministic control of the SAM chain...
The fabrication of oriented, crystalline films of metal-organic frameworks (MOFs) is a critical step...
Metal-organic frameworks (MOFs) have received increased attention in recent years due to their excep...
The ability to align porous metal–organic frameworks (MOFs) on substrate surfaces on a macroscopic s...
Metal-organic frameworks (MOFs) have emerged as a promising class of crystalline porous inorganic-or...
The liquid phase epitaxy (LPE) of the metal-organic framework (MOF) HKUST-1 has been studied for thr...
Currently available methodologies arguably lack the exquisite control required for producing metal-o...
Metal Organic Frameworks (MOFs) sind poröse Materialien mit kristalliner Struktur. Sie bestehen aus ...
Integration of surface-anchored metal-organic frameworks (surMOFs) within hierarchical architectures...
The layer-by-layer growth of a surface-attached metal–organic framework (SURMOF), [Cu<sub>2</sub>(F...
Herein we report the precise alignment of multiple layers of metal-organic framework (MOF) thin film...
Thin films can integrate the versatility and great potential found in the emerging field of metal-or...
Metal-Organic Frameworks (MOFs) are Zeolite-like hybride organic-inorganic materials which combine u...
A metal–organic framework (MOF) material, [Zn2(adc)2(dabco)] (adc = anthracene-9,10-dicarboxylate, d...
Metal organic frameworks (MOF) are highly porous crystalline structures that are most commonly studi...
The functionalization of surfaces to obtain high specific surface areas is important for catalysis, ...
The fabrication of oriented, crystalline films of metal-organic frameworks (MOFs) is a critical step...
Metal-organic frameworks (MOFs) have received increased attention in recent years due to their excep...
The ability to align porous metal–organic frameworks (MOFs) on substrate surfaces on a macroscopic s...
Metal-organic frameworks (MOFs) have emerged as a promising class of crystalline porous inorganic-or...
The liquid phase epitaxy (LPE) of the metal-organic framework (MOF) HKUST-1 has been studied for thr...
Currently available methodologies arguably lack the exquisite control required for producing metal-o...
Metal Organic Frameworks (MOFs) sind poröse Materialien mit kristalliner Struktur. Sie bestehen aus ...
Integration of surface-anchored metal-organic frameworks (surMOFs) within hierarchical architectures...
The layer-by-layer growth of a surface-attached metal–organic framework (SURMOF), [Cu<sub>2</sub>(F...
Herein we report the precise alignment of multiple layers of metal-organic framework (MOF) thin film...
Thin films can integrate the versatility and great potential found in the emerging field of metal-or...
Metal-Organic Frameworks (MOFs) are Zeolite-like hybride organic-inorganic materials which combine u...
A metal–organic framework (MOF) material, [Zn2(adc)2(dabco)] (adc = anthracene-9,10-dicarboxylate, d...
Metal organic frameworks (MOF) are highly porous crystalline structures that are most commonly studi...
The functionalization of surfaces to obtain high specific surface areas is important for catalysis, ...
The fabrication of oriented, crystalline films of metal-organic frameworks (MOFs) is a critical step...
Metal-organic frameworks (MOFs) have received increased attention in recent years due to their excep...
The ability to align porous metal–organic frameworks (MOFs) on substrate surfaces on a macroscopic s...