1. Expanding and quantifying the crystal chemistry of the flexible ligand 15aneN5
- Author
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Anthony D. Shircliff, Elisabeth M. A. Allbritton, Dustin J. Davilla, Michael-Joseph Gorbet, Donald G. Jones, David S. Tresp, Michael B. Allen, Alina Shrestha, Gwendolyn E. Burgess, John I. Eze, Andrea T. Fernandez, Daniel Ramirez, Kody J. Shoff, Garet G. Crispin, Sarah B. Crone, Michael Flinn, Tien Tran, Darby S. Bryce, Abbagale L. Bond, Dylan W. Shockey, Allen G. Oliver, Jeanette A. Krause, Timothy J. Prior, and Timothy J. Hubin
- Subjects
TheoryofComputation_ANALYSISOFALGORITHMSANDPROBLEMCOMPLEXITY ,General Materials Science ,General Chemistry ,Condensed Matter Physics - Abstract
15aneN5 is structurally characterized complexed to Cr3+, Mn3+, Fe3+, Co3+, and Cu2+ for the first time. Ru3+ complexation yields a Ru2+ diimine structure. A geometric factor quantifies the coordination geometry of the ligand in its complexes.
- Published
- 2022
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