首页> 外文期刊>Zeitschrift fur Naturforschung, B. A Journal of Chemical Sciences >Syntheses, Solid-state Structures and Catalytic Activity of Zinc Carboxylate Complexes in Lactide Polymerization
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Syntheses, Solid-state Structures and Catalytic Activity of Zinc Carboxylate Complexes in Lactide Polymerization

机译:丙交酯聚合反应中羧酸锌配合物的合成,固态结构和催化活性

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摘要

Three dinuclear zinc carboxylate complexes [L1-3Zn(mu,eta(2)-O2CPh)](2) (1, 2, 4) containing either the bidentate N,N'-chelating beta-diketiminate ligand RNC(Me)C(H)C(Me)NR (R = 2,6-iPr(2)-C6H3, L-1, complex 1), the tridentate 0,N,N-chelating ligand OC(Me)C(H)C(Me)NCH2CH2NMe2 (L-2, complex 2) or the bis-N,N'-chelating bis-beta-diketiminate ligand RNC(Me)C(H)C(Me)NNC(Me)C(H)C(Me)-NR (R = 2,6-iPr(2)-C6H3, L-3, complex 4) were synthesized and characterized including single-crystal X-ray diffraction. Reaction of the neutral bis-beta-diketimine (L-3(H)(2)) with two equivalents of ZnMe2 leads to the expected heteroleptic dinuclear zinc complex L-3(ZnMe)(2) 3 in 93% yield. Further reaction with benzoic acid PhCO2H leads to complex 4. Complex 2 forms a rather strong carboxylate-bridged dimer, whereas the carboxylate groups in complexes 1 and 4 act as asymmetrical bridges between both Zn atoms, pointing to the formation of a wealdy bonded dimer. The zinc atoms in 1 and 4 are tetrahedrally coordinated, whereas in 2 the coordination number is increased to five due to the coordination of the pendant donor arm. The ring opening polymerization (ROP) of rac-lactide was investigated with the zinc complexes 1-4 and diazabicycloundec-7-ene (DBU) as a co-catalyst. Complexes 2 and 3 are active polymerization catalysts, which in the presence of DBU converted 200 equiv. of rac-lactide into polylactide within 10 min at ambient temperature. The analysis of the crude polymer showed that the lactide polymerization with catalyst 2 occurs via a slightly modified activated-monomer mechanism.
机译:三种双核羧酸锌配合物[L1-3Zn(mu,eta(2)-O2CPh)](2)(1、2、4),其中含有N,N'-螯合的β-二酮化配体RNC(Me)C( H)C(Me)NR(R = 2,6-iPr(2)-C6H3,L-1,配合物1),三齿0,N,N螯合配体OC(Me)C(H)C(Me )NCH2CH2NMe2(L-2,配合物2)或bis-N,N'螯合的bis-beta-二酮配体RNC(Me)C(H)C(Me)NNC(Me)C(H)C(Me)合成了-NR(R = 2,6-iPr(2)-C6H3,L-3,配合物4),并进行了表征,包括单晶X射线衍射。中性双-β-二酮亚胺(L-3(H)(2))与两当量ZnMe2的反应可产生预期的杂配双核锌络合物L-3(ZnMe)(2)3,产率为93%。与苯甲酸PhCO2H的进一步反应生成配合物4。配合物2形成相当强的羧酸桥连二聚体,而配合物1和4中的羧酸根基团充当两个Zn原子之间的不对称桥,表明形成了键合的二聚体。 1和4中的锌原子是四面体配位的,而在2中,由于悬垂的供体臂的配位,配位数增加到5。以锌配合物1-4和二氮杂双环十一碳7-烯(DBU)为助催化剂研究了外消旋丙交酯的开环聚合(ROP)。络合物2和3是活性聚合催化​​剂,其在DBU存在下转化为200当量。在室温下10分钟内将外消旋丙交酯转化为聚丙交酯。粗聚合物的分析表明,与催化剂2的丙交酯聚合是通过稍微改性的活化单体机理发生的。

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