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Crystallization of Alternating Limonene Oxide/Carbon Dioxide Copolymers: Determination of the Crystal Structure of Stereocomplex Poly(limonene carbonate)

机译:交替氧化一氧化碳/二氧化碳共聚物的结晶:立体复合物聚碳酸碳酸亚乙酯的晶体结构的确定

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The crystal structure of the alternating copolymer of limonene epoxide and carbon dioxide has been studied. Highly stereoregular and regioregular alternating copolymers have been prepared starting from cis/trans mixtures of both enantiopure (R) and (S) isomers of 1-methyl-4-(1-methylvinyl)-7-oxabicyclo[4.1.0] heptane (limonene oxide) using a beta-diiminate zinc complex under mild conditions of temperature and pressure, to yield enantiopure poly(1S,2S,4R-limonene carbonate) (PRLC) and poly(1R,2R,4S-limonene carbonate) (PSLC) products, respectively. Attempts to crystallize the pure enatiomers failed, whereas racemic mixtures readily crystallize from solution, forming racemic crystals. In the crystals, enantiomorphic chains are packed in an orthorhombic unit cell with axes a = 9.71 +/- 0.05 angstrom, b = 10.68 +/- 0.05 angstrom, and c = 11.31 +/- 0.05 angstrom (chain axis) according to the space group Pbc2(1) and 2 chains (4 monomeric units)/unit cell. The chain periodicity c of 11.31 angstrom can be accounted for by a s(2/1) helical conformation with nearly all-trans bonds in the backbone. Isoclined chains of opposite chirality are packed in the unit cell forming well interdigitated bc layers piled along a via zipper interactions of the enantiomorphic side groups belonging to adjacent chains. The structure is characterized by the presence of different types and degrees of disorder that arises from the nearly random rotation of isopropenyl groups around the connection bond to the cyclohexane rings (conformational disorder), twisting of cyclohexane cycles, and up/down positional disorder of isochiral chains in the lattice positions (substitution type disorder). It is argued that the formation of racemic crystals instead of a mixture of enantiopure crystals is stabilized by the favorable interactions of the polar carboxyl groups and the zipper interactions of the lateral chiral groups of first neighboring chains along b. It is also inferred that the crystallization of enantiopure crystals is prevented by the slow crystallization kinetics and the less favorable interactions between chains in an isochiral packing.
机译:已经研究了柠檬烯环氧化物和二氧化碳的交替共聚物的晶体结构。从1-甲基-4-(1-甲基乙烯基)-7-氧杂双环[4.1.0]庚烷(柠檬烯)的对映纯(R)和(S)异构体的顺式/反式混合物开始,制备了高度立体规则和区域规则的交替共聚物在温和的温度和压力条件下使用β-二氨基锌络合物生成对映体纯的聚(1S,2S,4R-碳酸柠檬烯酯)(PRLC)和聚(1R,2R,4S-碳酸柠檬烯酯)(PSLC)产品, 分别。结晶纯对映体的尝试失败,而外消旋混合物易​​于从溶液中结晶,形成外消旋晶体。在晶体中,根据空间,对映体链堆积在正交晶胞中,轴a = 9.71 +/- 0.05埃,b = 10.68 +/- 0.05埃,c = 11.31 +/- 0.05埃(链轴) Pbc2(1)组和2个链(4个单体单元)/单元格。 11.31埃的链周期性c可以由骨架中具有几乎所有反式键的s(2/1)螺旋构象解释。具有相反手性的异链的链条被填充在晶胞中,形成良好交叉的bc层,这些层沿着属于相邻链的对映体侧基的过孔拉链相互作用而堆积。该结构的特征是存在不同类型和程度的无序,这是由于异丙烯基围绕环己烷环的连接键几乎随机旋转(构象无序),环己烷环的扭曲以及异手性的上/下位置无序而引起的。晶格位置的链(取代型无序)。有人认为,外消旋晶体而不是对映纯晶体的混合物是通过极性羧基的有利相互作用和沿b的第一相邻链的侧向手性基团的拉链相互作用而稳定的。还可以推断,对映体纯晶体的结晶被缓慢的结晶动力学和等手性堆积中链之间较不利的相互作用所阻止。

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