We provide the first combined experimental and theoretical evaluation of how differences in ligand structure and framework topology affect the relative stabilities of isocompositional (i.e., true polymorph) metal–organic frameworks (MOFs). We used solution calorimetry and periodic DFT calculations to analyze the thermodynamics of two families of topologically distinct polymorphs of zinc zeolitic imidazolate frameworks (ZIFs) based on 2-methyl- and 2-ethylimidazolate linkers, demonstrating a correlation between measured thermodynamic stability and density, and a pronounced effect of the ligand substituent on their stability. The results show that mechanochemical syntheses and transformations of ZIFs are consistent with Ostwald’s rule of stag...
Metal–organic frameworks are chemically versatile materials, and excellent candidates for many appli...
We have developed a transferable ab initio intramolecular force field for zeolitic imidazolate frame...
The evolution of metal–organic frameworks (MOFs) has been one of the most exciting aspects of materi...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
The prediction of topological preferences and polymorph stability remains a challenge for the design...
The prediction of topological preferences and polymorph stability remains a challenge for the design...
The prediction of topological preferences and polymorph stability remains a challenge for the design...
Theoretical studies on the experimental feasibility of hypothetical Zeolitic Imidazolate Frameworks ...
By combining mechanochemical synthesis and calorimetry with theoretical calculations, we demonstrate...
Theoretical studies on the experimental feasibility of hypothetical Zeolitic Imida-zolate Frameworks...
Metal–organic frameworks are chemically versatile materials and are excellent candidates for many ap...
Metal–organic frameworks are chemically versatile materials, and excellent candidates for many appli...
We have developed a transferable ab initio intramolecular force field for zeolitic imidazolate frame...
The evolution of metal–organic frameworks (MOFs) has been one of the most exciting aspects of materi...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
We provide the first combined experimental and theoretical evaluation of how differences in ligand s...
The prediction of topological preferences and polymorph stability remains a challenge for the design...
The prediction of topological preferences and polymorph stability remains a challenge for the design...
The prediction of topological preferences and polymorph stability remains a challenge for the design...
Theoretical studies on the experimental feasibility of hypothetical Zeolitic Imidazolate Frameworks ...
By combining mechanochemical synthesis and calorimetry with theoretical calculations, we demonstrate...
Theoretical studies on the experimental feasibility of hypothetical Zeolitic Imida-zolate Frameworks...
Metal–organic frameworks are chemically versatile materials and are excellent candidates for many ap...
Metal–organic frameworks are chemically versatile materials, and excellent candidates for many appli...
We have developed a transferable ab initio intramolecular force field for zeolitic imidazolate frame...
The evolution of metal–organic frameworks (MOFs) has been one of the most exciting aspects of materi...