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“类 Janus”双嵌段树枝状大分子的超分子自组装:合成、热行为及相结构建模

Supramolecular self-organization of "Janus-like" diblock codendrimers: synthesis, thermal behavior, and phase structure modeling.

作者信息

Bury Izabela, Heinrich Benoît, Bourgogne Cyril, Guillon Daniel, Donnio Bertrand

机构信息

Institut de Physique et Chimie des Matériaux de Strasbourg, Groupe des Matériaux Organiques, UMR 7504-CNRS/Université Louis Pasteur, 23 rue du Loess, BP 43, 67034 Strasbourg Cedex 2, France.

出版信息

Chemistry. 2006 Nov 6;12(32):8396-413. doi: 10.1002/chem.200600449.

DOI:10.1002/chem.200600449
PMID:16892472
Abstract

We report on the design and synthesis of three series of segmented amphiphilic block codendrimers, and on their self-organizing behavior in liquid-crystalline mesophases. Connecting two prefunctionalized monodendrons, each differing in their chemical constitution and generation number, yielded these diblock supermolecules. One wedge of the codendrimer was made hydrophobic, and is based on a branched poly(benzyl ether) monodendron functionalized at the periphery by lipophilic aliphatic fragments (also known as Percec dendrons). The other segment was made hydrophilic by the grafting of hydroxyl-containing moieties onto the focal functions of the former dendrons. Both types of dendrons were prepared independently by convergent methods and then joined in the ultimate stage of the synthetic procedure by cross-coupling reactions. In this way, the proportion of the dendritic blocks was varied independently to allow control of the hydrophilic/hydrophobic balance (HHB), the hydrogen-bonding ability, and consequently the capacity to tune the mesomorphic properties of the resulting "superamphiphiles" was anticipated. Essentially all the dendritic compounds display a thermotropic mesomorphism directly at or near room temperature as determined by using X-ray diffraction, polarized optical microscopy, and differential scanning calorimetry. The nature and the supramolecular organization of the mesophases, namely columnar and cubic phases, are correlated to the size of the respective block monodendrons and the chemical structures of the dendromesogens. The molecular organization within the cubic phases can be geometrically described and well understood by the space-filling polyhedron model.

摘要

我们报告了三类分段两亲性嵌段树枝状大分子的设计与合成,以及它们在液晶中间相中的自组装行为。连接两个预先功能化的单枝状分子,每个分子在化学组成和代数上都不同,从而得到这些二嵌段超分子。树枝状大分子的一个楔形部分被制成疏水性的,它基于一个在周边被亲脂性脂肪族片段功能化的支化聚(苄基醚)单枝状分子(也称为佩尔采克树枝状分子)。另一个片段通过将含羟基的部分接枝到前一个树枝状分子的核心官能团上而制成亲水性的。这两种类型的树枝状分子均通过收敛法独立制备,然后在合成过程的最后阶段通过交叉偶联反应连接起来。通过这种方式,树枝状嵌段的比例可以独立变化,从而有望控制亲水/疏水平衡(HHB)、氢键能力,并进而调节所得“超两亲分子”的介晶性质。通过使用X射线衍射、偏光显微镜和差示扫描量热法测定,基本上所有的树枝状化合物在室温或接近室温时都直接呈现热致介晶性。中间相的性质和超分子组织,即柱状相和立方相,与相应的嵌段单枝状分子的大小以及树枝状介晶元的化学结构相关。立方相内的分子组织可以通过空间填充多面体模型进行几何描述并得到很好的理解。

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