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My research is in the field of metallo-supramolecular chemistry and bridges the traditional fields of organic and inorganic chemistry. I use a self-assembly approach and by combing the inherent physical and chemical properties of metals with organic (ligand) components I can design and synthesis new materials with central cavities that are capable of selectively binding smaller molecules. The resulting nanoscale structures can be either discrete or polymeric (framework) in nature. The potential applications for these compounds are diverse including drug delivery, catalysis, sequestration, separation and gas storage. Many of my compounds are characterised by X-ray diffraction methods. Due to their large size, somewhere between average “small” molecules and biological macromolecules (and challenging diffraction properties), I often employ synchrotron radiation for analysis.
My research work can roughly divided into the following sub-categories, although there are not always clear boundaries between each of them.
My research work can roughly divided into the following sub-categories, although there are not always clear boundaries between each of them.
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Nature Chemistryno. 3 (2024): 335-342
ANGEWANDTE CHEMIE-INTERNATIONAL EDITIONno. 1 (2024)
crossref(2024)
ANGEWANDTE CHEMIE-INTERNATIONAL EDITIONno. 4 (2024)
Small (Weinheim an der Bergstrasse, Germany)no. 25 (2023): e2207431-e2207431
Oscar H. Lloyd Williams, Olivia Rusli, Lida Ezzedinloo, Tyren M. Dodgen,Jack K. Clegg,Nicole J. Rijs
Angewandte Chemie (International ed. in English)pp.e202313892-e202313892, (2023)
CHEMISTRY OF MATERIALSno. 6 (2023): 2495-2502
CRYSTENGCOMMno. 12 (2023): 1763-1774
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