Cinderella Elements: Strategies to Increase the Stability of Group 1 Complexes by Tailoring Crown Macrocycles

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Cinderella Elements: Strategies to Increase the Stability of Group 1 Complexes by Tailoring Crown MacrocyclesAuthor(s)
Date
2014-06-01Citation
"Cinderella" Elements: Strategies to Increase the Stability of Group 1 Complexes by Tailoring Crown Macrocycles. Aurora Rodríguez-Rodríguez, Israel Carreira-Barral, David Esteban‐Gómez, Carlos Platas‐Iglesias, Andrés de Blas, and Teresa Rodríguez‐Blas. Inorganica Chimica Acta 2014 417, 155–163.
Abstract
[Abstract] The synthesis and structural characterization of six sodium complexes with bibracchial lariatethers containing aniline or benzimidazole side arms, and derived from 1,7 diaza-12-crown-4, 1,10-diaza-15-crown-5 or 4,13-diaza-18-crown-6, are reported. The X-ray structures of four of these compounds have been obtained. Additionally, the X-ray structures of a sodium macrobicyclic complex derived from 1,10-diaza-15-crown-5, and a potassium complex with a bibracchial lariat ether containing aniline side arms are also reported. Bonding distances as well as the stability constants in acetonitrile solution confirm that the coordination of the pendant arms provides an important contribution to the overall stability of the complexes, particularly when benzimidazole pendants are present rending more stable complexes, even more than cryptand complexes of the same size. Compared with the parent crown ethers, the stability increases when the side arms contain benzimidazole moieties but remains about the same order when aniline side arms are present.
Keywords
Macrocyclic ligands
X-ray crystal structures
Crown ethers
Alkaline metal complexes
Lariat ether
X-ray crystal structures
Crown ethers
Alkaline metal complexes
Lariat ether
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Atribución-NoComercial-SinDerivadas 3.0 España
ISSN
0020-1693