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Frustration and frustrated crystal structures of polymers and biopolymers

机译:聚合物和生物聚合物的受挫和受挫的晶体结构

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The manifestations of frustration are widespread in materials science. The more specific geometrical frustration in crystalline materials is created when physical interactions between nearest neighbors induce packing modes (e.g., the slight twist between neighboring DNA strands) that cannot propagate indefinitely throughout space. The structure is made of small domains separated by dislocation lines or other less ordered walls (e.g., in DNA blue phases). A second type of geometrical frustration, compatible with crystallographic symmetry, may arise in hexagonal close-packed crystals of helices with 3-fold symmetry. If favorable pair-pair interactions exist between helices, they can propagate only in a honeycomb pattern. The resulting unit cell is trigonal and contains three independent helices, one of which interacts less favorably with its neighbors-thus the frustration. Recognition of this type of geometrical frustration in polymer crystallography is relatively recent, although some crystal structures determined long ago displayed what amounts to frustration. This frustration is widespread: a number of chiral crystal structures of polymers and biopolymers conform to, and probably many more will fit in, this packing scheme. Frustration in polymers manifests itself by specific diffraction and morphological features (e.g., triangular single crystals) and, in one case, could be imaged by AFM. The frustrated structures provide, in view of their unusual characteristics, an exceptional investigation material to further elucidate the finer details of polymer crystallography and polymer crystallization processes.
机译:挫折的表现在材料科学中很普遍。当最近的邻居之间的物理相互作用导致无法无限期地在整个空间中传播的堆积模式(例如,相邻DNA链之间的轻微扭曲)时,会在晶体材料中产生更具体的几何沮丧感。该结构由由位错线或其他较不规则的壁(例如,处于DNA蓝相)分隔的小区域组成。与晶体对称性兼容的第二种几何挫折可能出现在具有3倍对称性的螺旋六方密堆积晶体中。如果在螺旋之间存在有利的一对对相互作用,则它们只能以蜂窝状传播。生成的晶胞是三角形的,包含三个独立的螺旋,其中一个螺旋与其邻域的相互作用较弱,因此产生了挫败感。尽管很早以前确定的某些晶体结构显示出多少构成了挫折,但在聚合物晶体学中对这种类型的几何挫折的认识却相对较新。这种挫败感是普遍存在的:许多聚合物和生物聚合物的手性晶体结构都符合这种填充方案,并且可能还会有更多的适应性。聚合物的挫败感通过特定的衍射和形态特征(例如三角形单晶)表现出来,在一种情况下可以通过AFM成像。鉴于其不寻常的特性,受挫的结构提供了一种出色的研究材料,以进一步阐明聚合物晶体学和聚合物结晶过程的细节。

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    《Macromolecules》 |2012年第5期|共15页
  • 作者

    Lotz B.;

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