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首页> 外文期刊>Organometallics >Bis(tetramethylaluminate) Lanthanide Complexes Supported by Bi- and Tridentate Amidinate Ligands: Performance in Isoprene Polymerization
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Bis(tetramethylaluminate) Lanthanide Complexes Supported by Bi- and Tridentate Amidinate Ligands: Performance in Isoprene Polymerization

机译:双(四甲基alminate)双 - 和三乙炔酰胺配体负载的镧系元素:异戊二烯聚合中的性能

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摘要

The isolable bis(tetramethylaluminate) lanthanide complexes [2-R-2,6-XC6H4NC(tBu)(2,6-(R1C6H3)-C-2)]Ln(AlMe4) (2) (R-1 = R-2 = X = Me, Ln = La (1); R-1 = R-2 = X = Me, Ln = Nd (2); R-1 = iPr, R-2 = H, X = OMe, Ln = La (3); R-1 = iPr, R-2 = H, X = OMe, Ln = Nd (4)) coordinated by bi- and tridentate amidinate ligands were synthesized by the reactions of the amidines 2,6-Me2C6H3N-C(tBu)NH-2,6-Me2C6H3 and 2,6-iPr(2)C(6)H(3)N=C(tBu)NH-2MeOC(6)H(4) with Ln(AlMe4)(3) (Ln = La, Nd) and were isolated in 81, 75, 86, and 74% yields, respectively. X-ray analyses revealed that complexes 3 and 4 feature intramolecular coordination of an OMe group to the metal ions. Both AlMe4 fragments in complexes 3 and 4 coordinate to the metal centers in a kappa(2) mode, while in Nd complex 2 one AlMe4 group adopts a kappa(2) and the second a kappa(3)-coordination mode. Complexes 1-4 were evaluated as precatalysts for isoprene polymerization. The ternary catalytic systems 1-4/[Ph3C][B(C6F5)(4)],[PhNHMe2][B(C6F5)(4)]/nAlR(3) (AlR3 = AlMe3, n = 10; AliBu(2)H, n = 1; AliBu(3), n = 10) enable 82-100% conversions of 1000 equiv of monomer at 25 degrees C within 5-60 min. cis-1,4-Selectivity of the ternary catalytic systems proved to be affected by the type of ligand, the borate, the AlR3 cocatalyst, and the nature of the metallo center and varied in the range of 34.4-91.8%. The binary systems 1-4/[Ph3C][B(C6F5)(4)], [PhNHMe2][B(C6F5)(4)] also catalyze isoprene polymerization and afford polyisoprenes containing 96.2-99.0% of cis-1,4 units in polymer chains. The stereoselectivity of binary systems containing complex 1 dramatically depends on the type of borate: 66.8% of trans-1,4 for [Ph3C][B(C6F5)(4)] and 87.8% of cis-1,4 for [PhNHMe2][B(C6F5)(4)].
机译:可分离的双(四甲基铝酸盐)稀土配合物[2-R-2,6-XC6H4NC(tBu)(2,6-(R1C6H3)-C-2)]Ln(AlMe4)(2)(R-1=R-2=X=Me,Ln=La(1);R-1=R-2=X=Me,Ln=Nd(2);R-1=iPr,R-2=H,X=OMe,Ln=La(3);通过酰胺2,6-Me2C6H3N-C(tBu)NH-2,6-Me2C6H3和2,6-iPr(2)C(6)H(3)N=C(tBu)NH-4(3)(Ln=La,Nd)与Ln(AlMe4)(3)的反应,合成了由二齿和三齿酰胺化配体配位的R-1=iPr、R-2=H、X=OMe、Ln=Nd(4),并分别以81%、75%、86%和74%的产率分离。X射线分析显示,配合物3和4具有OMe基团与金属离子的分子内配位特征。配合物3和4中的AlMe4片段均以kappa(2)模式与金属中心配位,而在Nd配合物2中,一个AlMe4基团采用kappa(2)模式,第二个AlMe4基团采用kappa(3)模式。配合物1-4被评估为异戊二烯聚合的催化剂前体。三元催化体系1-4/[Ph3C][B(C6F5)(4)],[PhNHMe2][B(C6F5)(4)]/nAlR(3)(AlR3=AlMe3,n=10;AliBu(2)H,n=1;AliBu(3),n=10)使1000当量单体在25℃下在5-60分钟内转化率达到82-100%。三元催化系统的顺-1,4-选择性被证明受配体类型、硼酸盐、AlR3助催化剂和金属中心性质的影响,变化范围为34.4-91.8%。二元体系1-4/[Ph3C][B(C6F5)(4)],[PhNHMe2][B(C6F5)(4)]也催化异戊二烯聚合,得到聚合物链中含有96.2-99.0%顺式-1,4单元的聚异戊二烯。含有络合物1的二元体系的立体选择性显著地取决于硼酸盐的类型:[Ph3C][B(C6F5)(4)]的反式-1,4占66.8%,而[PhNHMe2][B(C6F5)(4)]的顺式-1,4占87.8%。

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