首页> 外文OA文献 >Five-Coordinate Rearrangements of Metallacyclobutane Intermediates during Ring-Opening Metathesis Polymerization of 2,3-Dicarboalkoxynorbornenes by Molybdenum and Tungsten Monoalkoxide Pyrrolide Initiators
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Five-Coordinate Rearrangements of Metallacyclobutane Intermediates during Ring-Opening Metathesis Polymerization of 2,3-Dicarboalkoxynorbornenes by Molybdenum and Tungsten Monoalkoxide Pyrrolide Initiators

机译:通过钼和钨单烷氧基吡咯烷引发剂2,3-二氨基烷酮植物的开环复分解聚合期间金属键式中间体的五坐标重排。通过钼和钨单烷氧基吡咯烷引发剂

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摘要

Addition of rac-DCENBE (2,3-dicarboethoxynorbornene) or rac-DCBNBE (2,3-dicarbo-tert-butoxynorbornene) to Mo(NAd)(CHCMe[subscript 2]Ph)(Pyr)(OHMT) (1a) (Ad = 1-adamantyl, OHMT = 2,6-dimesitylphenoxide, Pyr– = NC[subscript 4]H[subscript 4]–) led to the formation of polymers that have a cis,syndiotactic,alt structure analogous to the structure observed for the polymer obtained from rac-DCMNBE (2,3-dicarbomethoxynorbornene). The PDI of cis,syndio,alt-poly(DCBNBE) is low and decreases as the polymer length increases, and there is a linear relationship between the number of equivalents of monomer employed and the molecular weight of the polymers measured in THF versus polystyrene standards. In contrast, polymerization of (+)-DCMNBE by 1a at 25, 0, −25, and −40 °C yields a polymer that contains ~25% trans,isotactic dyads and 75% cis,syndiotactic dyads. A similar polymerization by Mo(NAd)(CHCMe[subscript 2]Ph)(Pyr)(OHIPT) (1b) (OHIPT = 2,6-(2,4,6-i-Pr[subscript 3])[subscript 2]C[subscript 6]H[subscript 3]) gives a polymer that contains cis,syndiotactic and trans,isotactic dyads in a ratio of ~8:92, respectively. This is the first report of synthesis of a norbornene polymer that has primarily a trans,isotactic structure. Addition of 100 equiv of (+)-DCMNBE, (−)-DCENBE, or (−)-DCBNBE to a toluene solution of W(O)(CH-t-Bu)(2,5-Me[subscript 2]NC[subscript 4]H[subscript 2])(OHMT)(PMe[subscript 2]Ph) (5) led to formation of ~99% cis,syndiotactic polymer. Cis,syndiotactic dyads arise through a mechanism that consists of a syn approach of the monomer to a syn alkylidene isomer followed by inversion of configuration at the metal center as a consequence of an exchange of aryloxide and pyrrolide ligands. The mechanism for formation of trans,isotactic dyads is one in which the monomer approaches in an anti fashion to the syn isomer followed by a “turnstile” rotation in the five-coordinate intermediate metallacyclobutane that allows the metallacylic ring to open productively with retention of configuration at the metal center. The metallacyclobutane intermediate that gives rise to trans,isotactic dyads in the copolymer could be regarded as a relatively high energy species with a “nonideal” structure compared to a trigonal bipyramidal or a square pyramidal structure.
机译:添加Rac-DceNbe(2,3-二氨基乙乙烯)或RAC-DCBNBE(2,3-二氨基 - 叔丁雄冰片烯)至MO(NAD)(CHCME [下标2] pH)(PYR)(OHMT)(1A)( Ad = 1-亚氨烷基,OHMT = 2,6-二丝体英酮氧化物,Pyr-= NC [下标4] H [下标4] - )导致形成具有独联体,间乳液,ALT结构的聚合物,类似于观察到的结构从RAC-DCMNBE(2,3-二氨基甲氧乙烯)获得的聚合物。 CIS,Syndio,Alt-Poly(DCBNBE)的PDI是低的并且随着聚合物长度的增加而降低,并且在所用单体的等同物的数量与THF与聚苯乙烯标准中测量的聚合物的分子量之间存在线性关系。相反,在25,0,-25和-40℃下聚合(+) - dcmnbe在1a处,产生含有〜25%反式,全同立构型和75%顺式的聚合物,同步立体二元。 Mo(NAD)(CHCME [下标2] pH)(PYR)(OHIPT)(1B)(OHIPT = 2,6-(2,4,6-I-PR [下标3])的相似聚合[下标2 [下标6] H [下标3])给出了含有CIS,Syndotic和Trans,同位分子的聚合物,分别为〜8:92的比例。这是第一份合成的降冰片烯聚合物的报告,其主要具有反式,全同立构结构。添加100时(+) - dcmnbe,( - ) - dcenbe,或( - ) - dcbnbe至w(o)的甲苯溶液(ch-t-bu)(2,5-me [下标2] nc [下标4] H [下标2])(OHMT)(PME [下标2] pH)(5)导致形成〜99%的CI,Syndoticatic聚合物。 CIS,Syndiotic Dyad通过由单体的机制而产生,该机制由单体与SYN亚烷基异构体组成,然后通过交换氧化芳氧化物和吡咯烷配体的形式在金属中心进行反转。用于形成反式的机制,单位型二元是单体以抗时尚的方法,其在SYN异构体中接近,然后在五坐标中间金属条丁烷中旋转,使金属环允许高效地打开构造在金属中心。与Trigonal双吡酰胺或方形锥体结构相比,共聚物中产生反式的金属环丁烷中间体可以被认为是具有“非膜”结构的相对高能量物质。

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