T
Thomas F. Koetzle
Researcher at Argonne National Laboratory
Publications - 173
Citations - 18371
Thomas F. Koetzle is an academic researcher from Argonne National Laboratory. The author has contributed to research in topics: Neutron diffraction & Crystal structure. The author has an hindex of 48, co-authored 173 publications receiving 18043 citations. Previous affiliations of Thomas F. Koetzle include Emory University & Brookhaven National Laboratory.
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Single-crystal neutron diffraction studies of hydrogen-bonded systems: Two recent examples from IPNS
TL;DR: In this article, the Argonne Intense Pulsed Neutron Source (IPNS) has been used to study hydrogen-bonded systems for single-crystal neutron diffraction.
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A refinement of the crystal structure of putrescine diphosphate with neutron diffraction data
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Low-temperature neutron structure determinations of a series of scorpionate complexes of molybdenum containing BHMo agostic bonds
Paula M. B. Piccoli,John A. Cowan,Arthur J. Schultz,Thomas F. Koetzle,Glenn P. A. Yap,Swiatoslaw Trofimenko +5 more
TL;DR: In this article, the structures of four dihydrobis(pyrazol-1-yl)borate (Bp) complexes of molybdenum have been determined at low temperature by single crystal neutron diffraction in order to accurately characterize the three-center B H Mo agostic bonding.
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Determination of the absolute configuration of (-)-(2R)-succinic-2-d acid by neutron diffraction study: unambiguous proof of the absolute stereochemistry of the NAD+/NADH interconversion
Hanna S. H. Yuan,Raymond C. Stevens,Sharon Fujita,Michael I. Watkins,Thomas F. Koetzle,Robert Bau +5 more
TL;DR: The result confirms the stereochemistry of the malate/succinate transformation, as well as the NAD+/NADH interconversion, and demonstrates the usefulness of the single-crystal neutron diffraction method for determining the absolute configuration of molecules having a chiral monodeuteriomethylene group.
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Direct Observation of Hydrogen-Deuterium Exchange Reaction in Cobaloxime Crystal by Neutron Diffraction.
TL;DR: In this article, the deuterium atom was exchanged partially with one of the three methyl hydrogenes of the cyanoethyl group, the exchanged one is located closest to the deutium atom.