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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Mono-BHT heteroleptic magnesium complexes: synthesis, molecular structure and catalytic behavior in the ring-opening polymerization of cyclic esters
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Mono-BHT heteroleptic magnesium complexes: synthesis, molecular structure and catalytic behavior in the ring-opening polymerization of cyclic esters

机译:单对不到异致镁络合物:环酯开环聚合中的合成,分子结构和催化性能

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摘要

Numerous heteroleptic 2,6-di-tert-butyl-4-methylphenolate (BHT) magnesium complexes have been synthesized by treatment of (BHT) MgBu(THF)(2) with various alcohols. Molecular structures of the complexes have been determined by X-ray diffraction. The magnesium coordination number in [(BHT) Mg (mu-OBn)(THF)](2) (3) and [(BHT) Mg(mu-O-tert-BuC6H4)(THF)](2) (4) is equal to 4. Complexes formed from esters of glycolic and lactic acids, [(BHT) Mg(mu-OCH2COOEt)(THF)] 2 (5) and [(BHT) Mg(mu-OCH(CH3) COOCH(2)COOtBu)(THF)](2) (6) contain chelate fragments with pentacoordinated magnesium. Compounds 3-6 contain THF molecules coordinated to magnesium atoms. Complex {(BHT) Mg[mu-O(CH2)(3)CON (CH3)(2)]}(2) (7) does not demonstrate any tendency to form an adduct with THF. It has been experimentally determined that complexes 3 and 5 are highly active catalysts of lactide polymerization. The activity of 4 is rather low, and complex 7 demonstrates moderate productivity. According to DOSY NMR experiments, compounds 3 and 5 retain their dimeric structures even in THF. The free energies of model dimeric [(DBP) Mg(mu-OMe)(Sub)](2) and monomeric (DBP) Mg(OMe)(Sub)(2) products on treatment of [(DBP) Mg (mu-OMe)(THF)](2) with a series of s-electron donors (Sub) have been estimated by DFT calculations. These results demonstrate that the substitution of THF by Sub in a dimeric molecule is an energetically allowed process, whereas the dissociation of dimers is energetically unfavorable. DFT modeling of e-CL and (DL)lactide ROP catalyzed by dimeric and monomeric complexes showed that a cooperative effect of two magnesium atoms occurs within the ROP for binuclear catalytic species. A comparison of the reaction profiles for ROP catalyzed by binuclear and mononuclear species allowed us to conclude that the binuclear mechanism is favorable in early stages of ROP initiated by dimers 3 and 5.
机译:通过处理具有各种醇的(BHT)MGBU(THF)(2),合成了许多异质2,6-二叔丁基-4-甲基酚酸盐(BHT)镁络合物。通过X射线衍射确定复合物的分子结构。 [(BHT)Mg(MU-OBN)(THF)](2)(3)和[(BHT)Mg(MU-O-TERT-BUC6H4)(THF)](2)(4)中的镁配位数等于4.由乙醇酸和乳酸的酯形成的复合物,[(BHT)Mg(MU-OCH2COOET)(THF)] 2(5)和[(BHT)Mg(MU-OCH(CH3)Cooch(2) CoOTBU)(THF)](2)(6)含有五戊环化镁的螯合物片段。化合物3-6含有与镁原子配位的THF分子。络合物{(BHT)Mg [MU-O(CH2)(3)CON(CH3)(2)]}(2)(7)没有表现出与THF形成加合物的任何趋势。已经通过实验确定复合物3和5是高活性丙交酯聚合的催化剂。 4的活动是相当低的,复杂的7显示了中等的生产率。根据剂量的NMR实验,化合物3和5即使在THF中也保持其二聚体结构。模型二聚体[(dbp)mg(mu-omm)(um)](2)和单体(dbp)mg(ome)(sub)(sub)(2)产物的自由能量[(dbp)mg(mu- OME)(THF)](2)通过DFT计算估计了一系列S-Electron供体(Sub)。这些结果表明,在二聚体分子中沉淀取代THF是能量允许的方法,而二聚体的解离能量上是不利的。由二聚体和单体复合物催化的E-Cl和(DL)丙交酯ROP的DFT建模表明,两种镁原子的协作效果发生在循环催化物质的ROP内。通过双核和单核物质催化的ROP反应谱的比较使我们得出结论,邻核机制有利于由二聚体3和5引发的ROP的早期阶段。

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