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基于单糖的两亲分子的立体化学依赖性热致液晶相。

Stereochemistry-dependent thermotropic liquid crystalline phases of monosaccharide-based amphiphiles.

作者信息

Mattsson Ida, Majoinen Johanna, Lahtinen Manu, Sandberg Thomas, Fogde Anna, Saloranta-Simell Tiina, Rojas Orlando J, Ikkala Olli, Leino Reko

机构信息

Laboratory of Molecular Science and Engineering, Johan Gadolin Process Chemistry Centre, Åbo Akademi University, FI-20500, Finland.

Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, FI-00076 Aalto, Finland.

出版信息

Soft Matter. 2023 Nov 8;19(43):8360-8377. doi: 10.1039/d3sm00939d.

Abstract

Conformational rigidity controls the bulk self-assembly and liquid crystallinity from amphiphilic block molecules to copolymers. The effects of block stereochemistry on the self-assembly have, however, been less explored. Here, we have investigated amphiphilic block molecules involving eight open-chain monosaccharide-based polyol units possessing different stereochemistries, derived from D-glucose, D-galactose, L-arabinose, D-mannose and L-rhamnose (allylated monosaccharides -Glc*, -Glc*, -Gal*, -Gal*, -Ara*, -Ara*, -Man*, and -Rha*), end-functionalized with repulsive tetradecyl alkyl chain blocks to form well-defined amphiphiles with block molecule structures. All compounds studied showed low temperature crystalline phases due to polyol crystallization, and smectic (lamellar) and isotropic phases upon heating in bulk. Hexagonal cylindrical phase was additionally observed for the composition involving -Man*. Cubic phases were observed for -Glc*, -Gal*, -Ara*, and -Rha* derived compounds. Therein, the rich array of WAXS-reflections suggested that the crystalline polyol domains are not ultra-confined in spheres as in classic cubic phases but instead show network-like phase continuity, which is rare in bulk liquid crystals. Importantly, the transition temperatures of the self-assemblies were observed to depend strongly on the polyol stereochemistry. The findings underpin that the stereochemistry in carbohydrate-based assemblies involves complexity, which is an important parameter to be considered in material design when developing self-assemblies for different functions.

摘要

构象刚性控制着两亲性嵌段分子到共聚物的本体自组装和液晶性。然而,嵌段立体化学对自组装的影响尚未得到充分探索。在这里,我们研究了两亲性嵌段分子,它们包含八个具有不同立体化学的基于开链单糖的多元醇单元,这些单元衍生自D-葡萄糖、D-半乳糖、L-阿拉伯糖、D-甘露糖和L-鼠李糖(烯丙基化单糖 -Glc*、-Glc*、-Gal*、-Gal*、-Ara*、-Ara*、-Man* 和 -Rha*),末端用排斥性的十四烷基链段官能化,以形成具有明确嵌段分子结构的两亲物。所有研究的化合物由于多元醇结晶而呈现低温晶相,在本体加热时呈现近晶(层状)相和各向同性相。对于含有-Man的组合物,还观察到六方柱状相。对于-Glc、-Gal*、-Ara和-Rha衍生的化合物,观察到立方相。其中,丰富的广角X射线散射(WAXS)反射表明,结晶多元醇域不像经典立方相那样超局限于球体中,而是呈现出网络状的相连续性,这在本体液晶中很少见。重要的是,观察到自组装的转变温度强烈依赖于多元醇的立体化学。这些发现强调了基于碳水化合物的组装体中的立体化学涉及复杂性,这是在开发具有不同功能的自组装体进行材料设计时需要考虑的一个重要参数。

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