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Phosphasalen group IV metal complexes: synthesis, characterization and ring opening polymerization of lactide
Author(s) -
Adrien T. Normand,
Raluca MalaceaKabbara,
Rosita Lapenta,
Aymeric Dajnak,
Philippe Richard,
Hélène Cattey,
Anaëlle Bolley,
Alfonso Grassi,
Stefano Milione,
Audrey Auffrant,
Samuel Dagorne,
Pierre Le Gendre
Publication year - 2020
Publication title -
dalton transactions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.98
H-Index - 184
eISSN - 1477-9234
pISSN - 1477-9226
DOI - 10.1039/d0dt00972e
Subject(s) - chemistry , ligand (biochemistry) , cationic polymerization , isomerization , octahedron , enantiomer , cis–trans isomerism , alkoxy group , stereochemistry , linker , ethylene , nuclear magnetic resonance spectroscopy , metal , polymerization , octahedral molecular geometry , crystallography , polymer chemistry , crystal structure , catalysis , organic chemistry , polymer , biochemistry , receptor , alkyl , operating system , computer science
We report the synthesis of a series of Zr and Ti complexes bearing phosphasalen which differs from salen by the incorporation of two P atoms in the ligand backbone. The reaction of phosphasalen proligands (1a-1c)H 2 with Zr(CH 2 Ph) 4 led to different products depending on the nature of the N,N-linker in the ligand. In the case of ethylene-linked phosphasalen, octahedral Zr complex 2a formed as a single stereoisomer in trans geometry. With the phenylene linker, it was shown by dynamic NMR spectroscopy that complex 2b exists as a mixture of trans and cis-β isomers in solution, both enantiomers (Δ and Λ) of the cis-β isomer being in fast equilibrium with respect to the NMR time-scale. The use of a propylene-linked phosphasalen proligand 1cH 2 led to a mixture of complexes among which a binuclear Zr complex 2c bridged only by one phosphasalen ligand could be isolated and characterized. Addition of 2 equiv. of i PrOH to 2a and 2b afforded diisoproxy Zr complexes 3a and 3b as a mixture of trans and cis-β isomers, the latter undergoing fast Δ/Λ isomerization in solution. Addition of B(C 6 F 5 ) 3 o 2a and 2b gave cationic monobenzyl Zr complexes 4a and 4b which have been further converted into cationic alkoxy Zr complexes 5a-b and 6a-b by alcoholysis with i PrOH and (S)-methyl-lactate, respectively. The reaction of the phosphasalen proligands with Ti(NMe 2 ) 4 proceeded diastereoselectively giving rise to Ti complexes 7a-c in octahedral geometry with cis-β wrapping of the ligand. The complexes have been tested for the ROP of rac-lactide. The neutral phosphasalen Ti and Zr complexes showed only poor activity probably due to the encumbered and electron donating nature of the phosphasalen ligand. In contrast, the cationic Zr alkoxides 5a, 6a and 6b are effective initiators for the controlled and hetero-selective ROP of rac-lactide.

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