Title
Synthesis and characterization of enantiopure planar–chiral phosphorus-linked diferrocenes
Abstract
In the course of an ongoing synthetic project on cyclic diferrocenylphosphines, we obtained a group of planar–chiral diferrocenyl com­pounds useful as precursors for subsequent cyclization. Here we report the crystal structures of two sym­metric com­pounds [(FcA)2(Ph)P], one of which contains four stereogenic centres (two C chiral and two planar chiral centres), i.e. 1,1′-(phenyl­phos­phane­di­yl)bis­{(2Sp)-2-[(1R)-1-(acet­yloxy)eth­yl]ferrocene}, [Fe2(C5H5)2(C24H25O4P)], and the other phosphine sulfide is a purely planar–chiral com­pound (two planar chiral centres), i.e. bis[(2Sp)--2-ethenylferrocen-1-yl]phenylphosphane sulfide, [Fe2(C5H5)2(C20H17PS)]. Owing to the stereocentres present, reactions performed on [(FcA)2(Ph)P]-type com­pounds strongly favour one ferrocene unit over the other due to diastereoselectivity. Furthermore, we present four related structures where the ferrocene units are not identical [(FcA)(FcB)(Ph)P]. These are {(2Sp)-2-[(1R)-1-(acet­yloxy)eth­yl]ferrocen-1-yl}[(2Sp)-2-ethenylferrocen-1-yl]phenyl-(S)-phosphine sulfide, [Fe2(C5H5)2(C22H21O2PS)], [(2Sp)-2-ethenylferrocen-1-yl]{(2Sp)-2-[(1R)-1-hy­droxy­eth­yl]ferrocen-1-yl}phenyl-(S)-phosphine sulfide, [Fe2(C5H5)2(C20H19OPS)], {(2Sp)-2-[(1R)-1-(acet­yloxy)eth­yl]ferro­cen-1-yl}{(2Sp)-2-[(1R)-1-hy­droxy­eth­yl]ferrocen-1-yl}phenyl-(R)-phos­phine sulfide, [Fe2(C5H5)2(C22H23O3PS)], and {(2Sp)-2-[(1R)-1-benzyl­amino)­eth­yl]ferrocen-1-yl}[(2Sp)-2-ethenylferrocen-1-yl]phenyl-(S)-phosphine sulfide, [Fe2(C5H5)2(C27H26NPS)]. All of the structures are accessible in one step from known precursors.
Keywords
crystal structuremetal organicthree-dimensional structureferrocenephosphine sulfidechiralityplanar chirality
Object type
Language
English [eng]
Persistent identifier
phaidra.univie.ac.at/o:1460237
Appeared in
Title
Acta Crystallographica Section C Structural Chemistry
Volume
77
Issue
3
ISSN
2053-2296
Issued
2021
From page
152
To page
160
Publication
International Union of Crystallography (IUCr)
Date issued
2021
Access rights
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