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手性聚苯乙炔的结构:从压缩/高动态到拉伸/准静态螺旋。

Architecture of Chiral Poly(phenylacetylene)s: From Compressed/Highly Dynamic to Stretched/Quasi-Static Helices.

机构信息

Centro Singular de Investigación en Química Biolóxica e Materiais Moleculares (CIQUS) and Departamento de Química Orgánica Universidade de Santiago de Compostela , 15782 Santiago de Compostela, Spain.

出版信息

J Am Chem Soc. 2016 Aug 3;138(30):9620-8. doi: 10.1021/jacs.6b04834. Epub 2016 Jul 22.

Abstract

The remarkable consequences in elongation, dynamic character, response to external stimuli (e.g., solvent effects, metal cations), and aggregation observed in helical poly(phenylacetylene)s (PPAs) when either the type of linkage with the pendant groups (i.e., anilide, benzamide) or the aromatic substitution pattern (i.e., ortho, meta, para) of the parent phenylacetylene monomer undergo modification are analyzed in depth. Two series of PPAs substituted at the phenyl ring in ortho, meta, and para with either (S)-α-methoxy-α-phenylacetic acid (MPA) or (S)-phenylglycine methyl ester (PGME) linked through anilide or benzamide bonds were prepared (i.e., o-, m-, p-poly-1 and poly-2 series) and characterized both in solution and in the solid state (CD, UV-vis, Raman, NMR, DSC, TGA, X-ray, AFM, SEM). Para-substituted polymers (p-poly-1 and p-poly-2) present the most compressed and dynamic helices, which respond easily to external stimuli. Meta-substituted PPAs (m-poly-1 and m-poly-2) exist as a mixture in equilibrium of two different helices (compressed and stretched), both less dynamic than the para counterparts and with a weak response to external stimuli. Moreover, in the solid state, m-poly-1 and m-poly-2 show separate fields for the compressed and for the stretched helices. For its part, the ortho-substituted PPA (o-poly-1) presents a highly stretched, almost planar and practically rigid helical structure, inert to external stimuli and prone to aggregate. These structural changes (elongation/dynamic behavior) are rationalized on the basis of the increasing difficulties imposed by the meta- and ortho-substitution on the accommodation of the pendants within the helical structure.

摘要

当侧基连接方式(即苯甲酰胺或苯胺)或苯乙炔单体的芳香取代模式(即邻位、间位、对位)发生变化时,螺旋聚(苯乙炔)(PPA)在伸长率、动态特性、对外界刺激的响应(例如溶剂效应、金属阳离子)和聚集方面表现出显著的变化。本文深入分析了这些变化。通过苯甲酰胺或苯甲酰胺键连接的邻位、间位和对位取代的苯基环上取代的两种系列 PPA(S)-α-甲氧基-α-苯乙酸(MPA)或(S)-苯甘氨酸甲酯(PGME)(即 o-、m-、p-聚-1 和聚-2 系列)进行了制备和表征,包括在溶液中和固态下(CD、UV-vis、Raman、NMR、DSC、TGA、X 射线、AFM、SEM)。对位取代聚合物(p-聚-1 和 p-聚-2)呈现出最压缩和动态的螺旋,对外界刺激容易做出响应。间位取代的 PPAs(m-聚-1 和 m-聚-2)以两种不同螺旋(压缩和拉伸)的平衡混合物存在,它们的动态性都比对位对应物差,对外界刺激的响应也较弱。此外,在固态下,m-聚-1 和 m-聚-2 显示出压缩和拉伸螺旋的单独区域。对于 o-聚-1 而言,它呈现出高度拉伸的、几乎平面的、几乎刚性的螺旋结构,对外界刺激不敏感且易于聚集。这些结构变化(伸长率/动态行为)基于间位和邻位取代对侧基在螺旋结构中容纳的影响程度的增加来合理化。

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