The growing field of MOF-catalyst composites often relies on postsynthetic modifications for the installation of active sites. In the resulting MOFs, the spatial distribution of the inserted catalysts has far-reaching ramifications for the performance of the system and thus needs to be precisely determined. Herein, we report the application of a scanning nuclear microprobe for accurate and nondestructive depth profiling of individual UiO-66 and UiO-67 (UiO = Universitetet i Oslo) single crystals. Initial optimization work using native UiO-66 crystals yielded a microbeam method which avoided beam damage,y while subsequent analysis of Zr/Hf mixed-metal UiO-66 crystals demonstrated the potential of the method to obtain high-resolution depth pr...
We report a study of the solvothermal formation of the interpenetrated form of the zinc 1,4-benzene ...
The development of a new technique capable of analyzing compounds crystallographically without first...
This dissertation aims to address several challenges in the chemistry of metal-organic frameworks (M...
The presence and variation of chemical functionality and defects in crystalline materials, such as m...
The identification and characterization of defects, on the molecular level, in metal‐organic framewo...
The presence and variation of chemical functionality and defects in crystalline materials, such as m...
Metal-organic frameworks (MOFs) are a class of porous crystalline materials showing great potential ...
© 2014 American Chemical SocietyThis paper describes the preparation and characterization of nanosca...
Metal-Organic Frameworks (MOFs) have the potential to change the landscape of molecular separations ...
UiO-66 with crystal size ranging from hundreds of nanometers to a few micrometers and with cubic and...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
Metal-organic frameworks (MOFs) are crystalline porous materials with designable topology, porosity ...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...
The application of Hirshfeld atom refinement (HAR) fragmentation method is demonstrated for the refi...
Since the discovery of MOFs in the 1990s, research into these materials has grown at an exceptional ...
We report a study of the solvothermal formation of the interpenetrated form of the zinc 1,4-benzene ...
The development of a new technique capable of analyzing compounds crystallographically without first...
This dissertation aims to address several challenges in the chemistry of metal-organic frameworks (M...
The presence and variation of chemical functionality and defects in crystalline materials, such as m...
The identification and characterization of defects, on the molecular level, in metal‐organic framewo...
The presence and variation of chemical functionality and defects in crystalline materials, such as m...
Metal-organic frameworks (MOFs) are a class of porous crystalline materials showing great potential ...
© 2014 American Chemical SocietyThis paper describes the preparation and characterization of nanosca...
Metal-Organic Frameworks (MOFs) have the potential to change the landscape of molecular separations ...
UiO-66 with crystal size ranging from hundreds of nanometers to a few micrometers and with cubic and...
Experimentally refined crystal structures for metal–organic frameworks (MOFs) often include solvent ...
Metal-organic frameworks (MOFs) are crystalline porous materials with designable topology, porosity ...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Defect engineering of met...
The application of Hirshfeld atom refinement (HAR) fragmentation method is demonstrated for the refi...
Since the discovery of MOFs in the 1990s, research into these materials has grown at an exceptional ...
We report a study of the solvothermal formation of the interpenetrated form of the zinc 1,4-benzene ...
The development of a new technique capable of analyzing compounds crystallographically without first...
This dissertation aims to address several challenges in the chemistry of metal-organic frameworks (M...