UMR 8181-UCCS-Unité de Catalyse et de Chimie du Solide, ENSCL, Centrale Lille, University of Artois, University of Lille, CNRS, F-59000 Lille, France.
Molecules. 2019 Aug 21;24(17):3024. doi: 10.3390/molecules24173024.
A series of iminopyridyl-based ligands, 6-[(Ar)N=C(R)]-2-CHN [(Ar = 2,6-Me-CH, R = Me (); Ar = 2,6-Pr-CH, R = Me (); Ar = 2,6-Me-CH, R = H (); Ar = 2,6-Pr-CH, R = H (); Ar = 3,5-(CF)-CH, R = Me (); Ar = CF, R = Me ()], and their corresponding iron (II) complexes were developed to investigate their application in the controlled coordinative polymerization of isoprene. The modulation of steric and electronic properties within this family of ligands/pre-catalysts has shown to influence the stereo-selectivity and activity of the polymerization of isoprene after activation. Upon activation with various co-catalysts such as AlBu/[PhC][B(CF)], AlEt/[PhC][B(CF)] or MAO, the resulting catalysts produced polyisoprenes with an excellent conversion (>99% of 500-5000 equiv.) within less than 1 h (TOF > 500 h) and having a variety of stereo-/regio-regularities. The presence of electron-donating and withdrawing groups drastically impacted the activity and the stereoselectivity of the catalysts during the course of the polymerization of isoprene. When activated with AlBu/[PhC][B(CF)], the complexes {6-[(2,6-Me-CH)N=C(Me)]-2-CHN}FeCl () and {6-[(2,6-Pr-CH)N=C(Me)]-2-CHN}FeCl () exhibited moderate -1,4 selectivity (>67%) while the iron-based systems bearing related aldiminopyridyl ligands {6-[(2,6-Me-CH)N=C(H)]-2-CHN}FeCl () and {6-[(2,6-Pr-CH)N=C(H)]-2-CHN}FeCl () were found to afford significant -1,4 selectivity at low temperature (>86% at -40 °C). On the other hand, the ternary {6-[(3,5-(CF)-CH)N=C(Me)]-2-CHN}FeCl () or {6-[(CF)N=C(Me)]-2-CHN}FeCl ()/AlBu/[PhC][B(CF)] catalytic combinations showed exceptional activity for the polymerization of isoprene (TOF > 1,000,000 h), albeit providing less stereoselectivity.
一系列基于亚氨基吡啶的配体,6-[(Ar)N=C(R)]-2-CHN [(Ar = 2,6-Me-CH,R = Me(); Ar = 2,6-Pr-CH,R = Me(); Ar = 2,6-Me-CH,R = H(); Ar = 2,6-Pr-CH,R = H(); Ar = 3,5-(CF) -CH,R = Me(); Ar = CF,R = Me()], 和它们相应的铁(II)配合物被开发出来,以研究它们在异戊二烯的可控配位聚合中的应用。在这个配体/预催化剂家族中,对立体和电子性质的调节表明,在激活后,对异戊二烯聚合的立体选择性和活性有影响。用各种助催化剂如 AlBu/[PhC][B(CF)]、AlEt/[PhC][B(CF)]或 MAO 激活后,所得催化剂在不到 1 小时内(TOF > 500 h)以极好的转化率(> 99%的 500-5000 当量)生成聚异戊二烯,并且具有多种立体/区域规整性。供电子和吸电子基团的存在在异戊二烯聚合过程中极大地影响了催化剂的活性和立体选择性。用 AlBu/[PhC][B(CF)]激活时,配合物{6-[(2,6-Me-CH)N=C(Me)]-2-CHN}FeCl()和{6-[(2,6-Pr-CH)N=C(Me)]-2-CHN}FeCl()表现出中等的 1,4-选择性(> 67%),而带有相关的亚氨基吡啶基配体的铁基体系{6-[(2,6-Me-CH)N=C(H)]-2-CHN}FeCl()和{6-[(2,6-Pr-CH)N=C(H)]-2-CHN}FeCl()则在低温下(>-40°C 时>86%)具有显著的 1,4-选择性。另一方面,三元{6-[(3,5-(CF) -CH)N=C(Me)]-2-CHN}FeCl()或{6-[(CF)N=C(Me)]-2-CHN}FeCl()/AlBu/[PhC][B(CF)]催化组合对异戊二烯的聚合表现出异常的活性(TOF > 1,000,000 h),尽管立体选择性较低。