Saitta A M, Soper P D, Wasserman E, Klein M L
Center for Molecular Modeling, Department of Chemistry, University of Pennsylvania, Philadelphia 19104-6202, USA.
Nature. 1999 May 6;399(6731):46-8. doi: 10.1038/19935.
Many experiments have been done to determine the relative strengths of different knots, and these show that the break in a knotted rope almost invariably occurs at the point just outside the 'entrance' to the knot. The influence of knots on the properties of polymers has become of great interest, in part because of their effect on mechanical properties. Knot theory applied to the topology of macromolecules indicates that the simple trefoil or 'overhand' knot is likely to be present in any long polymer strand. Fragments of DNA have been observed to contain such knots in experiments and computer simulations. Here we use ab initio computational methods to investigate the effect of a trefoil knot on the breaking strength of a polymer strand. We find that the knot weakens the strand significantly, and that, like a knotted rope, it breaks under tension at the entrance to the knot.
已经进行了许多实验来确定不同绳结的相对强度,这些实验表明,打结绳索的断裂几乎总是发生在绳结“入口”外的一点。绳结对聚合物性能的影响已引起了极大的兴趣,部分原因是它们对机械性能的影响。应用于大分子拓扑结构的纽结理论表明,任何长聚合物链中都可能存在简单的三叶结或“反手结”。在实验和计算机模拟中已经观察到DNA片段含有此类绳结。在这里,我们使用从头计算方法来研究三叶结对聚合物链断裂强度的影响。我们发现,绳结会显著削弱链的强度,并且与打结的绳索一样,它在张力作用下会在绳结入口处断裂。