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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Microspheres consisting of optically active helical substituted polyacetylenes: Preparation via suspension polymerization and their chiral recognition/release properties
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Microspheres consisting of optically active helical substituted polyacetylenes: Preparation via suspension polymerization and their chiral recognition/release properties

机译:由旋光的螺旋取代的聚乙炔组成的微球:悬浮聚合制备及其手性识别/释放性能

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摘要

Cross-linked microspheres consisting of optically active helical substituted polyacetylenes are reported. For preparing the microspheres, substituted polyacetylene copolymers with pendent polymerizable C=C bonds are first prepared and then used as macromonomers to copolymerize with acrylates via suspension polymerization, providing cross-linked microspheres. The helical polymer segments render the microspheres with optical activity, whereas the acrylate-based polymers afford the swelling property. CD and UV-vis spectra demonstrate the optical activity of the microspheres. The microspheres preferably adsorb (R)-(+)-1-phenylethylamine, (R)-(+)-N-benzyl-1- phenylethylamine, and Boc-D-alanine, whereas released Boc-L-alanine rather more rapidly than its enantiomer.
机译:据报道由光学活性的螺旋取代的聚乙炔组成的交联微球。为了制备微球,首先制备具有悬垂的可聚合的C = C键的取代的聚乙炔共聚物,然后用作大单体以通过悬浮聚合与丙烯酸酯共聚,从而提供交联的微球。螺旋聚合物链段使微球具有光学活性,而丙烯酸酯类聚合物则具有溶胀性能。 CD和UV-可见光谱证明了微球的光学活性。微球优选吸附(R)-(+)-1-苯基乙胺,(R)-(+)-N-苄基-1-苯基乙胺和Boc-D-丙氨酸,而释放Boc-L-丙氨酸比它的对映体。

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