Defect engineering is a valuable tool to tune the properties of Metal-Organic Frameworks. However, defect chemistry remains still predominantly limited to UiO-type MOFs. We describe the preferential formation of missing cluster defects in heterometallic titanium-organic frameworks of the MUV-10 family when synthesised in sub-stoichiometric linker conditions. Our results show the value of integrating experimental work, computational modelling and thorough characterization in rationalizing the impact of defects over the porosity and structure of this family of materials. Correlation of experiment with computational models reveals the dominance of missing cluster vacancies in the pore size distribution of defective MUV-10. These same models we...
Metal-organic frameworks (MOFs) are crystalline porous materials, in which the pores represent most ...
The work presented herein describes the relevance and study of structural heterogeneity in the porou...
International audienceMetal-organic frameworks are a novel family of chemically diverse materials, w...
The targeted incorporation of defects into crystalline matter allows for the manipulation of many pr...
The recognition of defect chemistry as a true synthetic tool for targeted creation of defects and co...
The wide-ranging properties of metal organic frameworks (MOFs) rely in many cases on the presence of...
Throughout much of condensed matter science, correlated disorder is a key to material function. Whil...
Throughout much of condensed matter science, correlated disorder is a key to material function. Whil...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...
© 2017 American Chemical Society. Over the past decade, the zirconium-terephthalate UiO-66 has evolv...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
Defect engineering can enhance key properties of metal-organic frameworks (MOFs). Tailoring the dist...
International audienceThe wide-ranging properties of metal organic frameworks (MOFs) rely in many ca...
In this PhD thesis we have studied the chemistry of defects within Metal-Organic Frameworks (MOFs) a...
Defect engineering in metal-organic frameworks (MOFs) is an exciting concept for tailoring material ...
Metal-organic frameworks (MOFs) are crystalline porous materials, in which the pores represent most ...
The work presented herein describes the relevance and study of structural heterogeneity in the porou...
International audienceMetal-organic frameworks are a novel family of chemically diverse materials, w...
The targeted incorporation of defects into crystalline matter allows for the manipulation of many pr...
The recognition of defect chemistry as a true synthetic tool for targeted creation of defects and co...
The wide-ranging properties of metal organic frameworks (MOFs) rely in many cases on the presence of...
Throughout much of condensed matter science, correlated disorder is a key to material function. Whil...
Throughout much of condensed matter science, correlated disorder is a key to material function. Whil...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...
© 2017 American Chemical Society. Over the past decade, the zirconium-terephthalate UiO-66 has evolv...
Vacancy lattice sites in the metal-organic framework UiO-66 are known to have a profound effect on t...
Defect engineering can enhance key properties of metal-organic frameworks (MOFs). Tailoring the dist...
International audienceThe wide-ranging properties of metal organic frameworks (MOFs) rely in many ca...
In this PhD thesis we have studied the chemistry of defects within Metal-Organic Frameworks (MOFs) a...
Defect engineering in metal-organic frameworks (MOFs) is an exciting concept for tailoring material ...
Metal-organic frameworks (MOFs) are crystalline porous materials, in which the pores represent most ...
The work presented herein describes the relevance and study of structural heterogeneity in the porou...
International audienceMetal-organic frameworks are a novel family of chemically diverse materials, w...