Steric control on the redox chemistry of (η5-C9H7)2YbII(THF)2 by 6-aryl substituted iminopyridines†
Alexander A. Trifonov,Boris G. Shestakov,Ivan D. Gudilenkov,Georgy K. Fukin,Giuliano Giambastiani,Claudio Bianchini,Andrea Rossin,Lapo Luconi,Jonathan Filippi,Lorenzo Sorace
Dalton Transactions Pub Date : 05/13/2011 00:00:00 , DOI:10.1039/C1DT10135H
Abstract

A steric control on the reductive capacity of ytterbocenes towards iminopyridine ligands is described. The reaction of (η5-C9H7)2Yb(THF)2 with a series of 6-organyl-2-(aldimino)pyridyl ligands (IPy) takes place with the replacement of two THF molecules by one IPy unit. In contrast to the rich reductive ytterbocene chemistry described in the presence of the unsubstituted (aldimino)pyridyl ligand, all 6-aryl substituted IPys scrutinized hereafter are involved into the metal coordination as neutral bidentate {N,N} or tridentate {N,N,S; N,N,O} ligands, with no changes of the metal oxidation state in the final complexes. A series of YbII metallocene complexes of general formula (η5-C9H7)2YbII2 or η3)[2,6-iPr2(C6H3)N[double bond, length as m-dash]CH(C5H3N)-6-R)] have been isolated and completely characterized. The stereo-electronic role of the aryl substituents in the IPy ligands on the ytterbocene redox chemistry has also been addressed.

Graphical abstract: Steric control on the redox chemistry of (η5-C9H7)2YbII(THF)2 by 6-aryl substituted iminopyridines