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镓和铟醇盐配合物作为丙交酯开环聚合催化剂的比较

A Comparison of Gallium and Indium Alkoxide Complexes as Catalysts for Ring-Opening Polymerization of Lactide.

作者信息

Kremer Alexandre B, Andrews Ryan J, Milner Matthew J, Zhang Xu R, Ebrahimi Tannaz, Patrick Brian O, Diaconescu Paula L, Mehrkhodavandi Parisa

机构信息

Department of Chemistry, University of British Columbia , 2036 Main Mall, Vancouver, British Columbia, Canada.

Department of Chemistry & Biochemistry, University of California , Los Angeles, California 90095, United States.

出版信息

Inorg Chem. 2017 Feb 6;56(3):1375-1385. doi: 10.1021/acs.inorgchem.6b02433. Epub 2017 Jan 19.

Abstract

The impact of the metal size and Lewis acidity on the polymerization activity of group 13 metal complexes was studied, and it was shown that, within the same ligand family, indium complexes are far more reactive and selective than their gallium analogues. To this end, gallium and aluminum complexes supported by a tridentate diaminophenolate ligand, as well as gallium complexes supported by N,N'-ethylenebis(salicylimine)(salen) ligands, were synthesized and compared to their indium analogues. Using the tridentate ligand set, it was possible to isolate the gallium chloride complexes 3 and (±)-4 and the aluminum analogues 5 and (±)-6. The alkoxygallium complex (±)-2, supported by a salen ligand, was also prepared and characterized and, along with the three-component system GaCl/BnOH/NEt, was tested for the ring-opening polymerization of lactide and ε-caprolactone. The polymerization rates and selectivities of both systems were significantly lower than those for the indium analogues. The reaction of (±)-2 with 1 equiv of lactide forms the first insertion product, which is stable in solution and can be characterized at room temperature. In order to understand the differences of the reactivity within the group 13 metal complexes, a Lewis acidity study using triethylphosphine oxide (the Gutmann-Beckett method) was undertaken for a series of aluminum, gallium, and indium halide complexes; this study shows that indium halide complexes are less Lewis acidic than their aluminum and gallium analogues. Density functional theory calculations show that the Mulliken charges for the indium complexes are higher than those for the gallium analogues. These data suggest that the impact of ligands on the reactivity is more significant than that of the metal Lewis acidity.

摘要

研究了金属尺寸和路易斯酸度对第13族金属配合物聚合活性的影响,结果表明,在同一配体家族中,铟配合物比其镓类似物的反应活性和选择性要高得多。为此,合成了由三齿二氨基酚配体支撑的镓和铝配合物,以及由N,N'-亚乙基双(水杨基亚胺)(salen)配体支撑的镓配合物,并与它们的铟类似物进行比较。使用三齿配体组,可以分离出氯化镓配合物3和(±)-4以及铝类似物5和(±)-6。还制备并表征了由salen配体支撑的烷氧基镓配合物(±)-2,并与三元体系GaCl/BnOH/NEt一起测试了丙交酯和ε-己内酯的开环聚合反应。两个体系的聚合速率和选择性均明显低于铟类似物。(±)-2与1当量丙交酯反应形成第一个插入产物该产物在溶液中稳定且可在室温下表征出来。为了理解第13族金属配合物反应活性的差异,对一系列铝、镓和铟卤化物配合物进行了使用三乙膦氧化物的路易斯酸度研究(古特曼-贝克特方法);该研究表明,铟卤化物配合物的路易斯酸性低于其铝和镓类似物密度泛函理论计算表明,铟配合物的穆利肯电荷高于镓类似物的穆利肯电荷。这些数据表明,配体对反应活性的影响比金属路易斯酸度的影响更为显著。

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