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铝配合物与席夫碱桥联双(吲哚基)配体:聚合 rac-丙交酯的合成、结构和催化活性。

Aluminum complexes with Schiff base bridged bis(indolyl) ligands: synthesis, structure, and catalytic activity for polymerization of rac-lactide.

机构信息

Laboratory of Functionalized Molecular Solids, Ministry of Education, Anhui Laboratory of Molecule-Based Materials, School of Chemistry and Materials Science, Anhui Normal University, Wuhu, Anhui 241000, P. R. China.

出版信息

Dalton Trans. 2019 Oct 14;48(40):15290-15299. doi: 10.1039/c9dt02724f.

Abstract

A series of Schiff base bridged bis(indolyl) ligands were developed for aluminum chemistry. The reactions of AlEt3 or AlMe3 with the Schiff base bridged bis(indolyl) proligands R1(-N[double bond, length as m-dash]CHC8H5NH)2 (R1 = -CH2CH2- (H2L1); -CH2CH2CH2- (H2L2); -CH2CMe2CH2- (H2L3); rac-Cy (H2L4); and R,R-Cy (H2L5)) were studied leading to the synthesis of a series of aluminum alkyl complexes L1AlEt (1)-L5AlEt (5) and L3AlMe (3b) in good yields, while the reaction of H2L3 with Al(OiPr)3 gave the aluminum alkoxide complex L3AlOiPr (3a). These aluminum complexes were characterized by spectroscopic methods and elemental analyses. The solid state structures of the aluminum complexes 1-5 and 3a were confirmed by the X-ray diffraction study. X-ray analyses revealed that the aluminum centre in these complexes is five-coordinated. The coordination geometry is between square pyramidal and trigonal bipyramidal. In the presence of 1 equiv. of isopropanol, the aluminum alkyl complexes exhibited notable activity towards the ring-opening polymerization of rac-lactide at 70 °C in toluene, with good control over molecular weights and dispersities. The substituents and the length of the bridging part between the two Schiff base nitrogen atoms have an influence on either the tacticity of isolated polymers or the rate of polymerization. The kinetics of complex L3AlOiPr (3a) in C6D6 was also investigated, and the experimental results revealed that the rate of polymerization was first-order with respect to rac-lactide.

摘要

一系列席夫碱桥联双(吲哚基)配体被开发用于铝化学。AlEt3 或 AlMe3 与席夫碱桥联双(吲哚基)前体配体 R1(-N[双键,长度为 m-dash]CHC8H5NH)2(R1=-CH2CH2-(H2L1);-CH2CH2CH2-(H2L2);-CH2CMe2CH2-(H2L3);rac-Cy(H2L4);和 R,R-Cy(H2L5))的反应导致了一系列铝烷基配合物 L1AlEt(1)-L5AlEt(5)和 L3AlMe(3b)的合成,产率良好,而 H2L3 与 Al(OiPr)3 的反应得到了铝烷氧基配合物 L3AlOiPr(3a)。这些铝配合物通过光谱方法和元素分析进行了表征。通过 X 射线衍射研究证实了铝配合物 1-5 和 3a 的固态结构。X 射线分析表明,这些配合物中的铝中心是五配位的。配位几何形状介于四方锥和三角双锥之间。在 1 当量异丙醇的存在下,铝烷基配合物在 70°C 的甲苯中对 rac-丙交酯的开环聚合表现出显著的活性,对分子量和分散度具有良好的控制。取代基和两个席夫碱氮原子之间的桥接部分的长度对孤立聚合物的立构规整性或聚合速率有影响。还研究了 C6D6 中配合物 L3AlOiPr(3a)的动力学,实验结果表明聚合速率与 rac-丙交酯呈一级关系。

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