The confined porous environment of metal organic frameworks (MOFs) is an attractive system for studying reaction mechanisms. Compared to flat oxide surfaces, MOFs have the key advantage that they exhibit a well-defined structure and present significantly fewer challenges in experimental characterization. As an example of an important reaction, we study here the dissociation of water—which plays a critical role in biology, chemistry, and materials science—in MOFs and show how the knowledge of the structure in this confined environment allows for an unprecedented level of understanding and control. In particular, combining in-situ infrared spectroscopy and first-principles calculations, we show that the water dissociation reaction can be sele...
Mechanisms of three reactions catalyzed by microporous materials were investigated computationally; ...
As global energy demand increases, breakthroughs in clean energy technologies will be needed to meet...
Metal-organic frameworks (MOFs) are a class of porous crystalline materials showing great potential ...
The confined porous environment of metal organic frameworks (MOFs) is an attractive system for study...
Water dissociation represents one of the most important reactions in catalysis, essential to the sur...
The stability of metal-organic frameworks is a key factor in many applications in some fields that r...
The stability of functional materials in water-containing environments is critical for their industr...
A comprehensive model to describe the water stability of prototypical metal–organic frameworks (MOFs...
Les Metal-Organic Frameworks (MOF) sont des matériaux hybrides poreux cristallisés constitués de clu...
Metal organic frameworks (MOFs) are a novel class of solid materials, comprising inorganic metal nod...
Metallorganic Frameworks (MOFs, also known as “Coordination Polymers”) are crystalline nanoporous ma...
The existing concerns on the limited stability of Zn4O-based MOFs upon exposure to humidity or aqueo...
Metal-organic frameworks (MOFs) are a new class of microporous materials that possess framework flex...
Metal-organic frameworks (MOFs) are a new category of advanced porous materials undergoing study by ...
MOF materials or metal-organic frameworks are compounds consisting of metal ions or clusters (metal ...
Mechanisms of three reactions catalyzed by microporous materials were investigated computationally; ...
As global energy demand increases, breakthroughs in clean energy technologies will be needed to meet...
Metal-organic frameworks (MOFs) are a class of porous crystalline materials showing great potential ...
The confined porous environment of metal organic frameworks (MOFs) is an attractive system for study...
Water dissociation represents one of the most important reactions in catalysis, essential to the sur...
The stability of metal-organic frameworks is a key factor in many applications in some fields that r...
The stability of functional materials in water-containing environments is critical for their industr...
A comprehensive model to describe the water stability of prototypical metal–organic frameworks (MOFs...
Les Metal-Organic Frameworks (MOF) sont des matériaux hybrides poreux cristallisés constitués de clu...
Metal organic frameworks (MOFs) are a novel class of solid materials, comprising inorganic metal nod...
Metallorganic Frameworks (MOFs, also known as “Coordination Polymers”) are crystalline nanoporous ma...
The existing concerns on the limited stability of Zn4O-based MOFs upon exposure to humidity or aqueo...
Metal-organic frameworks (MOFs) are a new class of microporous materials that possess framework flex...
Metal-organic frameworks (MOFs) are a new category of advanced porous materials undergoing study by ...
MOF materials or metal-organic frameworks are compounds consisting of metal ions or clusters (metal ...
Mechanisms of three reactions catalyzed by microporous materials were investigated computationally; ...
As global energy demand increases, breakthroughs in clean energy technologies will be needed to meet...
Metal-organic frameworks (MOFs) are a class of porous crystalline materials showing great potential ...