Throughout much of condensed matter science, correlated disorder is a key to material function. While structural and compositional defects are known to exist within a variety of metalâorganic frameworks (MOFs), the prevailing understanding is that these defects are only ever included in a random manner. Here we showâusing a combination of diffuse scattering, electron microscopy, anomalous X-ray scattering and pair distribution function measurementsâthat correlations between defects can in fact be introduced and controlled within a hafnium terephthalate MOF. The nanoscale defect structures that emerge are an analogue of correlated Schottky vacancies in rocksalt-structured transition metal monoxides and have implications for storage, transpor...
It is a general and common practice to carry out single crystal X-ray diffraction experiments at cry...
It is a general and common practice to carry out single-crystal X-ray diffraction experiments at cry...
International audienceIntuitively scientists accept that order can emerge from disorder and a signif...
Throughout much of condensed matter science, correlated disorder is a key to material function. Whil...
Defect engineering can enhance key properties of metal-organic frameworks (MOFs). Tailoring the dist...
Defect engineering can enhance key properties of metal-organic frameworks (MOFs). Tailoring the dist...
We survey the importance of correlated—as opposed to random—disorder in metal–organic frameworks (MO...
The wide-ranging properties of metal organic frameworks (MOFs) rely in many cases on the presence of...
Defect engineering is a valuable tool to tune the properties of Metal-Organic Frameworks. However, d...
Metal-organic frameworks (MOFs) are crystalline porous materials, in which the pores represent most ...
Crystalline materials are often considered to have rigid periodic lattices, while soft materials are...
International audienceThe wide-ranging properties of metal organic frameworks (MOFs) rely in many ca...
This Thesis explores the role of structural defects and disorder and their relationship to experimen...
International audienceMetal-organic frameworks are a novel family of chemically diverse materials, w...
We report a hafnium-containing MOF, hcp UiO-67(Hf), which is a ligand-deficient layered analogue of ...
It is a general and common practice to carry out single crystal X-ray diffraction experiments at cry...
It is a general and common practice to carry out single-crystal X-ray diffraction experiments at cry...
International audienceIntuitively scientists accept that order can emerge from disorder and a signif...
Throughout much of condensed matter science, correlated disorder is a key to material function. Whil...
Defect engineering can enhance key properties of metal-organic frameworks (MOFs). Tailoring the dist...
Defect engineering can enhance key properties of metal-organic frameworks (MOFs). Tailoring the dist...
We survey the importance of correlated—as opposed to random—disorder in metal–organic frameworks (MO...
The wide-ranging properties of metal organic frameworks (MOFs) rely in many cases on the presence of...
Defect engineering is a valuable tool to tune the properties of Metal-Organic Frameworks. However, d...
Metal-organic frameworks (MOFs) are crystalline porous materials, in which the pores represent most ...
Crystalline materials are often considered to have rigid periodic lattices, while soft materials are...
International audienceThe wide-ranging properties of metal organic frameworks (MOFs) rely in many ca...
This Thesis explores the role of structural defects and disorder and their relationship to experimen...
International audienceMetal-organic frameworks are a novel family of chemically diverse materials, w...
We report a hafnium-containing MOF, hcp UiO-67(Hf), which is a ligand-deficient layered analogue of ...
It is a general and common practice to carry out single crystal X-ray diffraction experiments at cry...
It is a general and common practice to carry out single-crystal X-ray diffraction experiments at cry...
International audienceIntuitively scientists accept that order can emerge from disorder and a signif...