Literature DB >> 15740141

Bimetallic anilido-aldimine zinc complexes for epoxide/CO2 copolymerization.

Bun Yeoul Lee1, Heon Yong Kwon, Su Yeon Lee, Sung Jae Na, Song-I Han, Hoseop Yun, Hyosun Lee, Young-Whan Park.   

Abstract

Acyclic o-phenylene-bridged bis(anilido-aldimine) compounds, o-C(6)H(4){C(6)H(2)R(2)N=CH-C(6)H(4)-(H)N(C(6)H(3)R'(2))}(2) and related 30-membered macrocyclic compounds, o-C(6)H(4){C(6)H(2)R'(2)N=CH-C(6)H(4)-(H)N-C(6)H(2)R(2)}(2) (o-C(6)H(4)) are prepared. Successive additions of Me(2)Zn and SO(2) gas to the bis(anilido-aldimine) compounds afford quantitatively dinuclear mu-methylsulfinato zinc complexes, o-C(6)H(4){(C(6)H(2)R(2)N=CH-C(6)H(4)-N(C(6)H(3)R'(2))-kappa(2)-N,N)Zn(mu-OS(O)Me)}(2) (R = iPr and R' = iPr, 29; R = Et and R' = Et, 30; R = Me and R'= Me, 31; R = Me and R' = iPr, 32; R = Et and R' = Me, 33; R = Et and R' = iPr, 34; R = iPr and R' = Et, 35) and o-C(6)H(4){C(6)H(2)R'(2)N=CH-C(6)H(4)-N-C(6)H(2)R(2)-kappa(2)-N,N)Zn(mu-OS(O)Me)}(2) (o-C(6)H(4)) (R = Et and R'= Et, 36; R = Me and R' = Me, 37; R = iPr and R' = Me, 38; R = Et and R' = Me, 39; R = Me and R'= iPr, 40). Molecular structures of 34 and 40 are confirmed by X-ray crystallography. Complexes 30-35 show high activity for cyclohexene oxide/CO(2) copolymerization at low [Zn]/[monomer] ratio (1:5600), whereas the complex of mononucleating beta-diketiminate {[(C(6)H(3)Et(2))N=C(Me)CH=C(Me)N(C(6)H(3)Et(2))]Zn(mu-OS(O)Et)}(2) shows negligible activity in the same condition. Activity is sensitive to the N-aryl ortho substituents and the highest activity is observed with 32. Turnover number up to 2980 and molecular weight (M(n)) up to 284 000 are attained with 32 at such a highly diluted condition as [Zn]/[monomer] = 1:17 400. Macrocyclic complexes 36-40 show negligible activity for copolymerization.

Entities:  

Year:  2005        PMID: 15740141     DOI: 10.1021/ja0435135

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  12 in total

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2.  Lithium achieves sequence selective ring-opening terpolymerisation (ROTERP) of ternary monomer mixtures.

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4.  (E)-N-[2-(Benzyl-iminometh-yl)phen-yl]-2,6-diisopropyl-aniline.

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5.  Macrocyclic Binucleating β-Diketiminate Ligands and their Lithium, Aluminum, and Zinc Complexes.

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6.  2-(Hydrazonomethyl)phenol.

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Review 7.  Catalysts for CO2/epoxide ring-opening copolymerization.

Authors:  G Trott; P K Saini; C K Williams
Journal:  Philos Trans A Math Phys Eng Sci       Date:  2016-02-28       Impact factor: 4.226

8.  Synergic Heterodinuclear Catalysts for the Ring-Opening Copolymerization (ROCOP) of Epoxides, Carbon Dioxide, and Anhydrides.

Authors:  Wilfred T Diment; Wouter Lindeboom; Francesca Fiorentini; Arron C Deacy; Charlotte K Williams
Journal:  Acc Chem Res       Date:  2022-07-21       Impact factor: 24.466

Review 9.  Ligands with Two Monoanionic N,N-Binding Sites: Synthesis and Coordination Chemistry.

Authors:  Robert Kretschmer
Journal:  Chemistry       Date:  2019-11-22       Impact factor: 5.236

Review 10.  Sidechain Metallopolymers with Precisely Controlled Structures: Synthesis and Application in Catalysis.

Authors:  Rui Qu; Hongyi Suo; Yanan Gu; Yunxuan Weng; Yusheng Qin
Journal:  Polymers (Basel)       Date:  2022-03-11       Impact factor: 4.329

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