Versatility in metal substitution is one of the key aspects of metal-organic framework (MOF) chemistry, allowing properties to be tuned in a rational way. As a result, it important to understand why MOF syntheses involving different metals arrive at or fail to produce the same topological outcome. Frequently, conditions are tuned by trial-and-error to make MOFs with different metal species. We ask: is it possible to adjust synthetic conditions in a systematic way in order to design routes to desired phases? We have used in situ X-ray powder diffraction to study the solvothermal formation of isostructural M2 (bdc)2 dabco (M=Zn, Co, Ni) pillared-paddlewheel MOFs in real time. The metal ion strongly influences both kinetics and intermediates o...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
We report a study of the solvothermal formation of the interpenetrated form of the zinc 1,4-benzene ...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Understanding the driving forces controlling crystallization is essential for the efficient synthesi...
Using time-resolved monochromatic high energy X-ray diffraction, we present an in situ study of the ...
There is an increasing amount of interest in metal–organic frameworks (MOFs) for a variety of applic...
There is an increasingly large amount of interest in metal-organic frameworks (MOFs) for a variety o...
Understanding the driving forces controlling crystallisation has important consequences ranging ...
Developing rapid room-temperature synthesis is key to sustainable manufacturing of metal–organic fra...
There is an increasing amount of interest in metal-organic frameworks (MOFs) for a variety of applic...
Metal Organic Frameworks (MOFs) represent a class of nanoporous crystalline materials with far reach...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
We report a study of the solvothermal formation of the interpenetrated form of the zinc 1,4-benzene ...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Metal–organic frameworks (MOFs) are among the most sophisticated nanostructured solids: they often p...
Understanding the driving forces controlling crystallization is essential for the efficient synthesi...
Using time-resolved monochromatic high energy X-ray diffraction, we present an in situ study of the ...
There is an increasing amount of interest in metal–organic frameworks (MOFs) for a variety of applic...
There is an increasingly large amount of interest in metal-organic frameworks (MOFs) for a variety o...
Understanding the driving forces controlling crystallisation has important consequences ranging ...
Developing rapid room-temperature synthesis is key to sustainable manufacturing of metal–organic fra...
There is an increasing amount of interest in metal-organic frameworks (MOFs) for a variety of applic...
Metal Organic Frameworks (MOFs) represent a class of nanoporous crystalline materials with far reach...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...
The material demands for metal-organic frameworks (MOFs) for next-generation energy-efficient CO2 ca...