Issue 43, 2024

Bipyridyldicarboxamides and f-metals: the influence of electron effects on the structure, stability, separation, and photophysical properties of their complexes

Abstract

In this work, three isomeric fluorinated bipyridyldicarboxamides were studied to evaluate the impact of the fluorine atom position on the structure, stability, Am(III)/Ln(III) separation, and photophysical properties of their complexes. The complexes of the fluorinated amides have a metal-to-ligand composition of 1 : 1, which is independent of the fluorine atom position or lanthanide metal. The bipyridyl fragments in the fluorinated complexes are flattened compared with those in unsubstituted ones. Ln-to-heteroatom distances are more affected by steric hindrance in the ligand and further by lanthanide ion radius contraction. This leads to significant effectivity of heavy lanthanide extraction compared with the light ones, particularly for 4F diamide. Fluorination leads to a slight variation in the excited triplet state of the complexes, and hence, the effectiveness of luminescence increases for Eu, Sm, and Tb complexes. Moreover, fluorination significantly affects the CIE chromaticity coordinates for the complexes.

Graphical abstract: Bipyridyldicarboxamides and f-metals: the influence of electron effects on the structure, stability, separation, and photophysical properties of their complexes

Supplementary files

Article information

Article type
Paper
Submitted
02 Sep 2024
Accepted
30 Sep 2024
First published
03 Oct 2024

Dalton Trans., 2024,53, 17673-17686

Bipyridyldicarboxamides and f-metals: the influence of electron effects on the structure, stability, separation, and photophysical properties of their complexes

N. E. Borisova, A. V. Kharcheva, T. B. Sumyanova, V. Gontcharenko, P. I. Matveev, L. Starostin, A. Trigub, A. V. Ivanov and S. V. Patsaeva, Dalton Trans., 2024, 53, 17673 DOI: 10.1039/D4DT02489C

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