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首页> 外文期刊>Scientific reports. >Configurational Molecular Glue: One Optically Active Polymer Attracts Two Oppositely Configured Optically Active Polymers
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Configurational Molecular Glue: One Optically Active Polymer Attracts Two Oppositely Configured Optically Active Polymers

机译:配置分子胶水:一种光学活性聚合物吸引了两个相对配置的光学活性聚合物

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D-configured poly(D-lactic acid) (D-PLA) and poly(D-2-hydroxy-3-methylbutanoic acid) (D-P2H3MB) crystallized separately into their homo-crystallites when crystallized by precipitation or solvent evaporation, whereas incorporation of L-configured poly(L-2-hydroxybutanoic acid) (L-P2HB) in D-configured D-PLA and D-P2H3MB induced co-crystallization or ternary stereocomplex formation between D-configured D-PLA and D-P2H3MB and L-configured L-P2HB. However, incorporation of D-configured poly(D-2-hydroxybutanoic acid) (D-P2HB) in D-configured D-PLA and D-P2H3MB did not cause co-crystallization between D-configured D-PLA and D-P2H3MB and D-configured D-P2HB but separate crystallization of each polymer occurred. These findings strongly suggest that an optically active polymer (L-configured or D-configured polymer) like unsubstituted or substituted optically active poly(lactic acid)s can act as “a configurational or helical molecular glue” for two oppositely configured optically active polymers (two D-configured polymers or two L-configured polymers) to allow their co-crystallization. The increased degree of freedom in polymer combination is expected to assist to pave the way for designing polymeric composites having a wide variety of physical properties, biodegradation rate and behavior in the case of biodegradable polymers.
机译:当通过沉淀或溶剂蒸发结晶时,D构造的聚(D-PLA)和聚(D-2-羟基-3-甲基丁酸)(D-P2H3MB)分别在其同源微晶中结晶,而在D配置的D-PLA和D-P2H3MB诱导的D形D-PLA和D-P2H3MB和D-P2H3MB和D-P2H3MB和D-P2H3MB和D-P2H3MB中掺入L形式聚(L-2-羟基丁酸)(L-P2HB)的共结晶或三元立体络合物L配置的L-P2HB。然而,在D配置的D-PLA和D-P2H3MB中掺入D配置的聚(D-2-羟基丁酸)(D-P2HB)在D配置的D-PLA和D-P2H3MB和D-P2H3MB和D-P2H3MB和D-P2H3MB中并未引起共结晶D配置的D-P2HB但是每个聚合物的单独结晶发生。这些发现强烈建议,如未取代的或取代的光学活性聚(乳酸)类似的光学活性聚合物(L构造的或D形化聚合物)可以充当两个相对配置的光学活性聚合物的“配置或螺旋分子胶水”(两个D配置的聚合物或两个L配置的聚合物)以允许其共结晶。预期聚合物组合的自由度增加,以帮助为设计具有多种物理性质,生物降解率和行为的聚合物复合材料来铺平途径,在可生物降解的聚合物的情况下。

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