Issue 10, 2020

A single-ligand-protected Eu60−nGd(Tb)n cluster: a reasonable new approach to expand lanthanide aggregations

Abstract

Lanthanide (Ln) high-nuclearity clusters express charming structures and extensive potential applications; nevertheless, the progress of successfully obtaining Ln clusters is still untoward. Herein, two fascinating and classical 60-metal configurations were obtained based on mixed-lanthanide and solvothermal conditions, namely [Ln60(CO3)83-OH)96(H2dmp)24(Hdmp)12] Br12(NO3)8(CH3OH)x(H2O)y (abbreviated as mixed-Ln60; for compound 1, Ln60 = Eu52.7Gd7.3, x = 8, y = 43; for compound 2, Ln60 = Eu52.2Tb7.8, x = 15, y = 30; H2dmp or Hdmp2− = 2,2-dimethylol propionic acid = L). The crystallographic study showed that the 60-metal core of compounds 1 and 2 are protected by a single type of organic ligand without any extra auxiliary ligand to complete the coordination sphere, which are the first to be reported in the containing Ln high-nuclearity clusters. Besides, the synthesis of 1 and 2 provides a practical way to obtain more analogues of Ln high-nuclearity clusters, featuring the original structure of the metal frame, which is expected to break the ionic radius limitation in the synthesis.

Graphical abstract: A single-ligand-protected Eu60−nGd(Tb)n cluster: a reasonable new approach to expand lanthanide aggregations

Supplementary files

Article information

Article type
Research Article
Submitted
20 Feb 2020
Accepted
01 Apr 2020
First published
02 Apr 2020

Inorg. Chem. Front., 2020,7, 2072-2079

A single-ligand-protected Eu60−nGd(Tb)n cluster: a reasonable new approach to expand lanthanide aggregations

X. Luo, N. Li, Q. Lin, J. Cao, P. Yuan and Y. Xu, Inorg. Chem. Front., 2020, 7, 2072 DOI: 10.1039/D0QI00226G

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