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Investigations of sterically demanding ligands in molybdenum and tungsten monopyrrolide monoalkoxide catalysts for olefin metathesis

机译:研究用于烯烃复分解的钼和钨单吡咯烷醇单醇盐催化剂中的空间要求配体

摘要

Chapter 2 investigates the mechanism of the temperature-controlled polymerization of 3- methyl-3-phenylcyclopropene (MPCP) by Mo(NAr)(CHCMe 2Ph)(Pyr)(OTPP) (Ar = 2,6- diisopropylphenyl, Pyr = pyrrolide, OTPP = 2,3,5,6-tetraphenylphenoxide). Cissyndiotactic poly(MPCP) is obtained at -78 °C, while atactic poly(MPCP) is obtained at ambient temperature. The syn initiator (syn refers to the isomer in which the substituent on the alkylidene points towards the imido ligand and anti where the substituent points away) reacts with MPCP to form an anti first-insertion product at low temperatures, which continues to propagate to give cis,syndiotactic polymer. At higher temperatures, the anti alkylidenes that form initially upon reaction with MPCP rotate thermally to syn alkylidenes on a similar timescale as polymer propagation, giving rise to an irregular polymer structure. In this system cis,syndiotactic polymer is obtained through propagation of anti alkylidene species. Chapters 3 - 5 detail the synthesis and reactivity of compounds containing a 2,6- dimesitylphenylimido (NAr*) ligand in order to provide a better understanding of the role of steric hindrance in olefin metathesis catalysts. A new synthetic route to imido alkylidene complexes of Mo and W, which proceeds through mixed-imido compounds containing both NAr* and NtBu ligands, was developed to incorporate the NAr* ligand. Alkylidene formation is accomplished by the addition of 3 equivalents of pyridine*HCl to Mo(NAr*)(NBu)(CH 2CMe2Ph)2 or the addition of 1 equivalent of pyridine followed by 3 equivalents of HCl solution to W(NAr*)(N'Bu)(CH 2CMe2Ph)2 to provide M(NAr*)(CHCMe 2Ph)Cl 2(py) (py = pyridine). Monoalkoxide monochloride, bispyrrolide, and monoalkoxide monopyrrolide (MAP) compounds are isolated upon substitution of the chloride ligands. Reaction of W MAP complexes (W(NAr*)(CHCMe 2Ph)(Me2Pyr)(OR)) with ethylene allows for the isolation of unsubstituted metallacycle complexes W(N Ar*)(C 3H6)(Me 2Pyr)(OR) (R = CMe(CF 3)2, 2,6-Me2C6H3, and SiPh 3). By application of vacuum to solutions of unsubstituted metallacyclebutane species, methylidene complexes W(NAr*)(CH 2)(Me2Pyr)(OR) (R = tBu, 2,6-Me2C6H3, and SiPh 3) are isolated. Addition of one equivalent of 2,3- dicarbomethoxynorbornadiene to methylidene species allows for the observation of firstinsertion products by NMR spectroscopy. Investigations of NAr* MAP compounds as catalysts for olefin metathesis reactions show that they are active catalysts, but not E or Z selective for ring-opening metathesis polymerization the homocoupling of 1-octene or 1,3-dienes. Methylidene species W(NAr*)(CH 2)(Me2Pyr)(OR) (R = 2,6-Me 2C6H3 or SiPh3) catalyze the ring-opening metathesis or substituted norbornenes and norbornadienes with ethylene.
机译:第2章探讨了Mo(NAr)(CHCMe 2Ph)(Pyr)(OTPP)(Ar = 2,6-二异丙基苯基,Pyr =吡咯化物,3-甲基-3-苯基环丙烯(MPCP)的温度控制聚合机理, OTPP = 2,3,5,6-四苯酚)。在-78°C下获得反同规多聚(MPCP),在环境温度下获得无规聚(MPCP)。 syn引发剂(syn引发剂(其中亚烷基上的取代基指向亚氨基配体,而anti取代基指向的anti)是异构体)在低温下与MPCP反应形成抗first-inserting产物,并继续传播生成顺式,间规聚合物。在较高的温度下,与MPCP反应时最初形成的抗亚烷基在与聚合物扩散相似的时间尺度上热旋转为顺式亚烷基,从而产生不规则的聚合物结构。在该体系中,顺式,间规聚合物是通过抗亚烷基物质的扩散而获得的。第3章至第5章详细介绍了含有2,6-二聚苯乙烯苯基亚氨基(NAr *)配体的化合物的合成和反应性,以便更好地理解位阻在烯烃复分解催化剂中的作用。通过掺入NAr *配体,开发了一条新的合成途径,合成Mo和W的亚氨基亚烷基配合物,该过程通过同时含有NAr *和NtBu配体的混合酰亚胺基化合物进行。通过向Mo(NAr *)(NBu)(CH 2CMe2Ph)2添加3当量的吡啶* HCl或向W(NAr *)(3)的HCl溶液添加1当量的吡啶来完成亚烷基的形成。 N'Bu)(CH 2CMe2Ph)2提供M(NAr *)(CHCMe 2Ph)Cl 2(py)(py =吡啶)。在取代氯化物配体时,分离出单烷氧基一氯化物,双吡咯化物和一烷氧基单吡咯化物(MAP)化合物。 W MAP配合物(W(NAr *)(CHCMe 2Ph)(Me2Pyr)(OR))与乙烯的反应可分离未取代的金属环配合物W(N Ar *)(C 3H6)(Me 2Pyr)(OR)( R = CMe(CF 3)2,2,6-Me2C6H3,和SiPh 3)。通过对未取代的金属环丁烷物种的溶液施加真空,分离出亚甲基络合物W(NAr *)(CH 2)(Me2Pyr)(OR)(R = tBu,2,6-Me2C6H3和SiPh 3)。在亚甲基种类中添加一当量的2,3-二碳甲氧基降冰片二烯可以通过NMR光谱观察首次插入的产物。对作为烯烃复分解反应催化剂的NAr * MAP化合物的研究表明,它们是活性催化剂,但对于开环复分解聚合中的1-辛烯或1,3-二烯的均偶联反应,不是E或Z选择性的。亚甲基物质W(NAr *)(CH 2)(Me2Pyr)(OR)(R = 2,6-Me 2C6H3或SiPh3)催化开环易位或被乙烯取代的降冰片烯和降冰片二烯。

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