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首页> 外文期刊>Macromolecules >Decorating conjugated polymer chains with naturally occurring molecules: Synthesis, solvatochromism, chain helicity, and biological activity of sugar-containing poly(phenylacetylene)s
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Decorating conjugated polymer chains with naturally occurring molecules: Synthesis, solvatochromism, chain helicity, and biological activity of sugar-containing poly(phenylacetylene)s

机译:用天然存在的分子修饰共轭聚合物链:含糖聚苯乙炔的合成,溶剂变色,链螺旋和生物活性

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摘要

Phenylacetylene derivatives containing different sugar moieties and functional bridges (1-5) are synthesized. Their polymerizations are affected by organorhodium complexes, producing corresponding polymers P1-P5 with high molecular weights (M-w up to 1.2 x 10(6)) and stereoregularities (Z content up to 100%) in high yields (up to 99%). The polyene backbones undergo irreversible Z-to-E isomerization at similar to 160-230 degrees C. The solutions of the polymers exhibit solvatochromism: their backbone absorptions change with variations in the surrounding media. The polymers show Cotton effects in the long wavelength region where their polyene backbones absorb, revealing that the chiral sugar pendants have induced the polymer chain to take a helical conformation with an excess in one-handedness. Inserting a flexible methylene spacer between the chiral pendant and the polyene backbone hampers the helicity induction process and lowers the backbone circular dichroism. The acetonide protection groups in most of the polymers can be selectively deprotected by acid-catalyzed hydrolysis, yielding polymers with "free" sugar appendages. The polymers are cytophilic and can stimulate the growth of living cells.
机译:合成了包含不同糖部分和功能桥(1-5)的苯乙炔衍生物。它们的聚合受到有机organ络合物的影响,以高收率(高达99%)生产具有高分子量(M-w高达1.2 x 10(6))和立构规整度(Z含量高达100%)的相应聚合物P1-P5。多烯骨架在类似于160-230摄氏度的条件下经历不可逆的Z到E异构化。聚合物溶液表现出溶剂致变色性:它们的骨架吸收随周围介质的变化而变化。聚合物在其多烯主链吸收的长波长区域表现出棉花效应,这表明手性糖侧基已诱导聚合物链呈螺旋构象,且单手性过多。在手性侧基和多烯骨架之间插入柔性亚甲基间隔基会阻碍螺旋诱导过程,并降低骨架的圆二色性。多数聚合物中的丙酮化物保护基可以通过酸催化的水解选择性地脱保护,从而得到带有“游离”糖附加物的聚合物。这些聚合物具有亲细胞性,可以刺激活细胞的生长。

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