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首页> 外文期刊>Molecules >Synthesis of Stable and Soluble One-Handed Helical Homopoly(substituted acetylene)s without the Coexistence of Any Other Chiral Moieties via Two-Step Polymer Reactions in Membrane State: Molecular Design of the Starting Monomer
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Synthesis of Stable and Soluble One-Handed Helical Homopoly(substituted acetylene)s without the Coexistence of Any Other Chiral Moieties via Two-Step Polymer Reactions in Membrane State: Molecular Design of the Starting Monomer

机译:通过膜态的两步聚合反应合成稳定且可溶的单手螺旋均聚(取代的乙炔)而没有其他手性部分的共存:起始单体的分子设计

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摘要

A soluble and stable one-handed helical poly(substituted phenylacetylene) without the coexistence of any other chiral moieties was successfully synthesized by asymmetric-induced polymerization of a chiral monomer followed by two-step polymer reactions in membrane state: (1) removing the chiral groups (desubstitution); and (2) introduction of achiral long alkyl groups at the same position as the desubstitution to enhance the solubility of the resulting one-handed helical polymer (resubstitution). The starting chiral monomer should have four characteristic substituents: (i) a chiral group bonded to an easily hydrolyzed spacer group; (ii) two hydroxyl groups; (iii) a long rigid hydrophobic spacer between the chiral group and the polymerizing group; (iv) a long achiral group near the chiral group. As spacer group a carbonate ester was selected. The two hydroxyl groups formed intramolecular hydrogen bonds stabilizing a one-handed helical structure in solution before and after the two-step polymer reactions in membrane state. The rigid long hydrophobic spacer, a phenylethynylphenyl group, enhanced the solubility of the starting polymer, and realized effective chiral induction from the chiral side groups to the main chain in the asymmetric-induced polymerization. The long alkyl group near the chiral group avoided shrinkage of the membrane and kept the reactivity of resubstitution in membrane state after removing the chiral groups. The g value (g = ([θ]/3,300)/ε) for the CD signal assigned to the main chain in the obtained final polymer was almost the same as that of the starting polymer in spite of the absence of any other chiral moieties. Moreover, since the one-handed helical structure was maintained by the intramolecular hydrogen bonds in a solution, direct observation of the one-handed helicity of the final homopolymer has been realized in CD for the solution for the first time.
机译:通过不对称引发手性单体的聚合反应,然后在膜态进行两步聚合物反应,成功合成了可溶且稳定的单手螺旋聚(取代的苯基乙炔)螺旋,没有其他任何手性部分的共存:(1)去除手性团体(替代); (2)在与取代基相同的位置引入非手性长烷基,以增强所得单手螺旋状聚合物的溶解性(取代)。起始手性单体应具有四个特征性取代基:(i)与易水解的间隔基键合的手性基团; (ii)两个羟基; (iii)手性基团和聚合基团之间的长的刚性疏水性间隔基; (iv)靠近手性基团的长的非手性基团。作为间隔基团,选择了碳酸酯。两个羟基形成的分子内氢键稳定了膜态两步聚合物反应前后溶液中的单手螺旋结构。刚性长疏水间隔基(苯基乙炔基苯基)增强了起始聚合物的溶解度,并在不对称引发的聚合反应中实现了从手性侧基到主链的有效手性诱导。手性基团附近的长烷基避免了膜的收缩,并且在除去手性基团之后保持了在膜状态下的再取代的反应性。尽管没有其他手性部分,但最终聚合物中分配给主链的CD信号的g值(g =([θ] / 3,300)/ε)与起始聚合物几乎相同。 。此外,由于通过溶液中的分子内氢键保持单手螺旋结构,因此对于该溶液,首次在CD中实现了直接观察最终均聚物的单手螺旋性。

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    《Molecules》 |2012年第1期|共19页
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