Issue 8, 2011

Synthesis and characterisation of trigonal C2-chiral di- and tetra-substituted bis(oxazoline) alkyl zinc complexes and their reactivity towards protic reagents

Abstract

A series of zinc(II) alkyl complexes stabilised by the C2-chiral bis(oxazoline) ligand (R1,R2BOX, with R1 = (4S)-tBu, R2 = H (a); R1 = (4S)-Ph, R2 = H (b); R1 = (4R)-Ph, R2 = (5S)-Ph (c)), has been synthesised and structurally characterised. (R1,R2BOX)H ligands react with ZnEt2 in toluene to give the heteroleptic three-coordinate compounds of (R1,R2BOX)ZnEt, 1a, 1b and 1c in high yield. However, when the addition of (BOX)H ligands (a–b) over ZnEt2 is “uncontrolled”, the formation of homoleptic four-coordinate compounds are favoured (2a–b), but not for the more sterically crowded ligand (c). The zinc-ethyl derivatives (1a–c) react readily with protic reagents such as acetic acid (HOAc) and methanol (MeOH). For compounds 1a–c a redistribution of ligands is observed leading preferentially to homoleptic compounds, except for the bulkier ligand c providing a three-coordinate complex identified as (Ph,PhBOX)Zn(OMe), 4c. The reaction of acetylacetone (acacH) with compounds 1a–c leads straightforwardly to the more stable four-coordinate compounds corresponding to (R1,R2BOX)Zn(η2-acac), 5a–c. The potential of these compounds as initiators for the copolymerisation of epoxides with CO2 was investigated.

Graphical abstract: Synthesis and characterisation of trigonal C2-chiral di- and tetra-substituted bis(oxazoline) alkyl zinc complexes and their reactivity towards protic reagents

Supplementary files

Article information

Article type
Paper
Submitted
17 Sep 2010
Accepted
22 Nov 2010
First published
19 Jan 2011

Dalton Trans., 2011,40, 1768-1777

Synthesis and characterisation of trigonal C2-chiral di- and tetra-substituted bis(oxazoline) alkyl zinc complexes and their reactivity towards protic reagents

E. Le Roux, N. Merle and K. W. Törnroos, Dalton Trans., 2011, 40, 1768 DOI: 10.1039/C0DT01252A

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