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Rules of the Prize History of the Prize For many years, Phillips Analytical have sponsored a prize lecture in physical crystallography.
Giving several examples, it shows how to handle difficult structures, and how to deal with e.g. Thus, a picture is drawn, which presents the current situation of the method of single-crystal X-ray diffraction: where is crystallography today and how can it possibly develop in the near future. As a crystallographer I strive to extract the best structure possible out of every crystal.
dealt with methods development in both protein and small molecular crystallography: The thesis is entitled Problems of modern high-resolution single-crystal X-ray structure analysis and investigates some of the major problems of modern X-ray structure analysis, from crystallisation through data-collection and structure refinement to model validation. thesis were the basis for a textbook on Structure Refinement that came out in July 2006. Since 2004 I have been the director of the chemistry department's X-ray diffraction facility at MIT.
The winner will be asked to present a 30 minute talk about their Ph D work, and will be presented with their prize.
Methods and techniques of Physical Crystallography will be interpreted in a broad fashion, for example, to include x-ray and neutron diffraction or scattering, Rietveld analysis and structure refinement, total scattering, structure-property relationships, development of structure-solution techniques, crystallography under non-ambient conditions, use of complementary techniques to diffraction (e.g.
Even though single crystal X-ray structure determination is in some ways a mature science, the quality of many published crystal structures leaves room for improvement ( Marsh 2004, Marsh 2003, Lutz & Spek 2004, Speck 2003).
Dating back to my doctoral work in George Sheldrick's lab, one of the leading crystallographic groups in the world, I spent most of my research improving the method of X-ray crystallography.