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超分子树枝状液晶准晶体

Supramolecular dendritic liquid quasicrystals.

作者信息

Zeng Xiangbing, Ungar Goran, Liu Yongsong, Percec Virgil, Dulcey Andrés E, Hobbs Jamie K

机构信息

Department of Engineering Materials, University of Sheffield, Sheffield S1 3JD, UK.

出版信息

Nature. 2004 Mar 11;428(6979):157-60. doi: 10.1038/nature02368.

Abstract

A large number of synthetic and natural compounds self-organize into bulk phases exhibiting periodicities on the 10(-8)-10(-6) metre scale as a consequence of their molecular shape, degree of amphiphilic character and, often, the presence of additional non-covalent interactions. Such phases are found in lyotropic systems (for example, lipid-water, soap-water), in a range of block copolymers and in thermotropic (solvent-free) liquid crystals. The resulting periodicity can be one-dimensional (lamellar phases), two-dimensional (columnar phases) or three dimensional ('micellar' or 'bicontinuous' phases). All such two- and three-dimensional structures identified to date obey the rules of crystallography and their symmetry can be described, respectively, by one of the 17 plane groups or 230 space groups. The 'micellar' phases have crystallographic counterparts in transition-metal alloys, where just one metal atom is equivalent to a 10(3)-10(4)-atom micelle. However, some metal alloys are known to defy the rules of crystallography and form so-called quasicrystals, which have rotational symmetry other than the allowed two-, three-, four- or six-fold symmetry. Here we show that such quasiperiodic structures can also exist in the scaled-up micellar phases, representing a new mode of organization in soft matter.

摘要

大量的合成化合物和天然化合物会由于其分子形状、两亲性程度以及通常存在的额外非共价相互作用,自组装成在10⁻⁸ - 10⁻⁶米尺度上呈现周期性的体相。这类相存在于溶致体系(例如,脂质 - 水体系、皂 - 水体系)、一系列嵌段共聚物以及热致(无溶剂)液晶中。所产生的周期性可以是一维的(层状相)、二维的(柱状相)或三维的(“胶束状”或“双连续”相)。迄今为止所识别出的所有这类二维和三维结构都遵循晶体学规则,并且它们的对称性可以分别用17种平面群或230种空间群中的一种来描述。“胶束状”相在过渡金属合金中有晶体学对应物,其中仅一个金属原子就相当于一个含有10³ - 10⁴个原子的胶束。然而,已知一些金属合金违背晶体学规则并形成所谓的准晶体,其具有除了允许的二、三、四或六重对称性之外的旋转对称性。在这里我们表明,这种准周期结构也可以存在于放大的胶束相中,代表了软物质中的一种新的组织模式。

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