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Soluble Zintl Phases A14ZnGe16 (A = K, Rb) Featuring [(η3-Ge4)Zn(η2-Ge4)]6– and [Ge4]4– Clusters and the Isolation of [(MesCu)2(η3,η3-Ge4)]4–: The Missing Link in the Solution Chemistry of Tetrahedral Group 14 Element Zintl Clusters

Authors :
Saskia Stegmaier
Laura-Alice Jantke
Markus Waibel
Alexander Henze
Antti J. Karttunen
Thomas F. Fässler
Source :
Journal of the American Chemical Society. 134:14450-14460
Publication Year :
2012
Publisher :
American Chemical Society (ACS), 2012.

Abstract

The number of Zintl phases containing polyhedral clusters of tetrel elements that are accessible for chemical reactions of the main-group element clusters is rather limited. The synthesis and structural characterization of two novel ternary intermetallic phases A14ZnGe16 (A = K, Rb) are presented, and their chemical reactivity is investigated. The compounds can be rationalized as Zintl phases with 14 alkali metal cations A+ (A = K, Rb), two tetrahedral [Ge4]4– Zintl anions, and one anionic heterometallic [(Ge4)Zn(Ge4)]6– cluster per formula unit. The Zn–Ge cluster comprises two (Ge4) tetrahedra which are linked by a Zn atom, with one (Ge4) tetrahedron coordinating with a triangular face (η3) and the other one with an edge (η2). [(η3-Ge4)Zn(η2-Ge4)]6– is a new isomer of the [(Ge4)Zn(Ge4)]6– anion in Cs6ZnGe8. The phases dissolve in liquid ammonia and thus represent rare examples of soluble Zintl compounds with deltahedral units of group 14 element atoms. Compounds with tetrahedral [E4]4– species have previ...

Details

ISSN :
15205126 and 00027863
Volume :
134
Database :
OpenAIRE
Journal :
Journal of the American Chemical Society
Accession number :
edsair.doi...........a848732dddd44114fbd864c788549e1a
Full Text :
https://doi.org/10.1021/ja304251t