Duan Yu-Lai, He Jia-Xuan, Wang Wei, Zhou Jing-Jing, Huang Yong, Yang Ying
Key Laboratory of Nonferrous Metals Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou 730000, Gansu, P. R. China.
Dalton Trans. 2016 Jun 28;45(26):10807-20. doi: 10.1039/c6dt01486k.
Reactions of amine-bridged bis(phenolate) protio-ligands N,N-bis(3,5-di-tert-butyl-2-hydroxybenzyl)aminoacetic acid (L(1)-H3) and N,N-bis[3,5-bis(α,α'-dimethylbenzyl)-2-hydroxybenzyl]aminoacetic acid (L(2)-H3), with 1 equiv. M[N(SiMe3)2]3 (M = La, Nd, Sm, Gd, Y) in THF at room temperature yielded the neutral rare-earth complexes [M2(L)2(THF)4] (L = L(1), M = La (), Nd (), Sm (), Gd (), Y (); L = L(2), M = La (), Nd (), Sm (), Gd (), Y ()). All of these complexes were characterized by single-crystal X-ray diffraction, elemental analysis and in the case of yttrium and lanthanum complexes, (1)H NMR spectroscopy. The molecular structure of revealed dinuclear species in which the eight-coordinate lanthanum centers were bonded to two oxygen atoms of two THF molecules, to three oxygen atoms and one nitrogen atom of one L(1) ligand, and two oxygen atoms of the carboxyl group of another. Complexes were also dinuclear species containing seven-coordinate metal centers similar to , albeit with bonding to one rather than two carboxyl group oxygens of another ligand. Further treatment of with excess benzyl alcohol provided dinuclear complex [La2(L(1))2(BnOH)6] (), in which each lanthanum ion is eight-coordinate, bonded to three oxygen atoms and one nitrogen atom of one ligand, three oxygen atoms of three BnOH molecules, as well as one oxygen atom of bridging carboxyl group of the other ligand. In the presence of BnOH, complexes efficiently catalyzed the ring-opening polymerization of l-lactide in a controlled manner and gave polymers with relatively narrow molecular weight distributions. The kinetic and mechanistic studies associated with the ROP of l-lactide using /BnOH initiating system have been performed.
胺桥联双(酚)质子配体N,N-双(3,5-二叔丁基-2-羟基苄基)氨基乙酸(L(1)-H3)和N,N-双[3,5-双(α,α'-二甲基苄基)-2-羟基苄基]氨基乙酸(L(2)-H3)与1当量的M[N(SiMe3)2]3(M = La、Nd、Sm、Gd、Y)在室温下于四氢呋喃(THF)中反应,生成中性稀土配合物[M2(L)2(THF)4](L = L(1),M = La()、Nd()、Sm()、Gd()、Y();L = L(2),M = La()、Nd()、Sm()、Gd()、Y())。所有这些配合物均通过单晶X射线衍射、元素分析进行了表征,对于钇和镧配合物还进行了1H核磁共振光谱表征。的分子结构显示为双核物种,其中八配位的镧中心与两个THF分子的两个氧原子、一个L(1)配体的三个氧原子和一个氮原子以及另一个羧基的两个氧原子相连。配合物也是含有七配位金属中心的双核物种,与类似,尽管与另一个配体的一个而非两个羧基氧原子相连。用过量苄醇进一步处理得到双核配合物[La2(L(1))2(BnOH)6](),其中每个镧离子为八配位,与一个配体的三个氧原子和一个氮原子、三个BnOH分子的三个氧原子以及另一个配体桥连羧基的一个氧原子相连。在苄醇存在下,配合物以可控方式有效催化了丙交酯的开环聚合反应,并得到了分子量分布相对较窄的聚合物。已经进行了与使用/BnOH引发体系的丙交酯开环聚合反应相关的动力学和机理研究。