首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Influence of stereoregularity and linkage groups on chiral recognition of poly(phenylacetylene) derivatives bearing L -leucine ethyl ester pendants as chiral stationary phases for HPLC
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Influence of stereoregularity and linkage groups on chiral recognition of poly(phenylacetylene) derivatives bearing L -leucine ethyl ester pendants as chiral stationary phases for HPLC

机译:立构规整度和连接基团对带有L-亮氨酸乙酯侧基作为HPLC手性固定相的聚苯乙炔衍生物的手性识别的影响

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Stereoregular poly(phenylacetylene) derivatives bearing L-leucine ethyl ester pendants, poly-1 and poly-2a, were, respectively, synthesized by the polymerization of N-(4-ethynylphenylcarbamoyl)-L-leucine ethyl ester (1) and N-(4-ethynylphenyl-carbonyl)-L-leucine ethyl ester (2) using Rh(nbd)BPh _4 as a catalyst, while stereoirregular poly-2b was synthesized by solid-state thermal polymerization of 2. Their chiral recognition abilities for nine racemates were evaluated as chiral stationary phases (CSPs) for high-performance liquid chromatography (HPLC) after coating them on silica gel. Both poly-1 and poly-2a with a helical conformation showed their characteristic recognition depending on coating solvents and the linkage groups between poly(phenylacetylene) and L-leucine ethyl ester pendants. Poly-2a with a shorter amide linkage showed higher chiral recognition than poly-1 with a longer urea linkage. Coating solvents played an important role in the chiral recognition of both poly-1 and poly-2a due to the different conformation of the polymer main chains induced by the solvents. A few racemates were effectively resolved on the poly-2a coated with a MeOH/CHCl_3 (3/7, v/v) mixture. The separation factors for these racemates were comparable to those obtained on the very popular CSPs derived from polysaccharide phenylcarbamates. Stereoirregular poly-2b exhibited much lower chiral recognition than the corresponding stereoregular, helical poly-2a, suggesting that the regular structure of poly(phenylacetylene) main chains is essential to attain high chiral recognition.
机译:通过N-(4-乙炔基苯基氨基甲酰基)-L-亮氨酸乙酯(1)和N-的聚合反应,分别合成带有L-亮氨酸乙酯侧基的立体异构体聚(苯基乙炔)衍生物poly-1和poly-2a。 (4-乙炔基苯基羰基)-L-亮氨酸乙酯(2)以Rh(nbd)BPh _4为催化剂,而立体不规则聚2b通过2的固态热聚合合成。它们对9个外消旋体的手性识别能力将其涂在硅胶上后,作为高效液相色谱(HPLC)的手性固定相(CSP)进行评估。具有螺旋构象的poly-1和poly-2a都显示出它们的特性识别,这取决于涂层溶剂以及聚苯乙炔和L-亮氨酸乙酯侧基之间的连接基团。具有较短酰胺键的poly-2a与具有较长脲键的poly-1相比,具有更高的手性识别能力。涂层溶剂在poly-1和poly-2a的手性识别中起重要作用,这是由于溶剂诱导的聚合物主链的构象不同。在涂覆有MeOH / CHCl_3(3/7,v / v)混合物的poly-2a上有效拆分了一些外消旋物。这些外消旋物的分离因子与从多糖苯基氨基甲酸酯衍生的非常流行的CSP上获得的分离因子相当。立体不规整的poly-2b表现出比相应的立体规整的螺旋poly-2a更低的手性识别能力,这表明聚苯乙炔主链的规则结构对于获得高手性识别至关重要。

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