Iminophosphorane Neodymium(III) Complexes As Efficient Initiators for Lactide Polymerization

Buchard, Antoine and Platel, Rachel H. and Auffrant, Audrey and Le Goff, Xavier F. and Le Floch, Pascal and Williams, Charlotte K. (2010) Iminophosphorane Neodymium(III) Complexes As Efficient Initiators for Lactide Polymerization. Organometallics, 29 (13). pp. 2892-2900. ISSN 0276-7333

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Abstract

Bis(iminophosphoranyl)methanide ({CH(PPh(2)NR)}(-), R = iPr or Ph) neodymium(III) complexes were prepared from NdI(3)(THF)(3.5). The steric bulk of the ligand controlled the stoichiometry of the resulting complexes. Thus, three new complexes, bearing one or two ancillary ligands, were prepared and characterized using various spectroscopic techniques and by single-Crystal X-ray diffraction. Reaction of the heteroleptic neodymium iodide complexes with amido groups yielded viable initiators for the ring-opening polymerization of lactide. The polymerizations were conducted using either the heteroleptic neodymium amido complexes or the in situ generated alkoxide complexes. Using such conditions, the neodymium complexes showed very fast and well-controlled polymerizations, with complete conversion being obtained in only a few minutes and yielding polylactide with controlled molecular weight and narrow polydispersity index. An initiating system comprising a rare neodymium-alkyl-carbene complex [Nd{C(PPh(2)NiPr)(2)}{CH(PPh(2)NiPr)(2)}] and externally added iPrOH was also an unexpected catalyst for the ROP of lactide.

Item Type:
Journal Article
Journal or Publication Title:
Organometallics
Uncontrolled Keywords:
/dk/atira/pure/subjectarea/asjc/1600/1604
Subjects:
?? LIGAND SYNTHESISCYCLIC ESTERSYTTRIUM COMPLEXESALUMINUM COMPLEXESALKOXIDE INITIATORSEPSILON-CAPROLACTONEGROUP-3 METAL-COMPLEXESRACEMIC LACTIDERAC-LACTIDERING-OPENING POLYMERIZATIONORGANIC CHEMISTRYPHYSICAL AND THEORETICAL CHEMISTRYINORGANIC CHEMISTRY ??
ID Code:
62870
Deposited By:
Deposited On:
13 Mar 2013 13:40
Refereed?:
Yes
Published?:
Published
Last Modified:
18 Sep 2023 00:39