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The Influence of Linker Geometry in Bis(3-hydroxy-N-methyl-pyridin-2-one) Ligands on Solution Phase Uranyl Affinity

✍ Scribed by Dr. Géza Szigethy; Prof. Dr. Kenneth N. Raymond


Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
404 KB
Volume
17
Category
Article
ISSN
0947-6539

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✦ Synopsis


Abstract

Seven water‐soluble, tetradentate bis(3‐hydroxy‐N‐methyl‐pyridin‐2‐one) (bis‐Me‐3,2‐HOPO) ligands were synthesized that vary only in linker geometry and rigidity. Solution‐phase thermodynamic measurements were conducted between pH 1.6 and pH 9.0 to determine the effects of these variations on proton and uranyl cation affinity. Proton affinity decreases by introduction of the solubilizing triethylene glycol group as compared to unsubstituted reference ligands. Uranyl affinity was found to follow no discernable trends with incremental geometric modification. The butyl‐linked 4 li‐Me‐3,2‐HOPO ligand exhibited the highest uranyl affinity, consistent with prior in vivo decorporation results. Of the rigidly‐linked ligands, the o‐phenylene linker imparted the best uranyl affinity to the bis‐Me‐3,2‐HOPO ligand platform.