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Polymorphic Ring-Shaped Molecular Clusters Made of Shape-Variable Building Blocks

机译:由形状可变的构建基块组成的多态环状分子簇

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摘要

Self-assembling molecular building blocks able to dynamically change their shapes, is a concept that would offer a route to reconfigurable systems. Although simulation studies predict novel properties useful for applications in diverse fields, such kinds of building blocks, have not been implemented thus far with molecules. Here, we report shape-variable building blocks fabricated by DNA self-assembly. Blocks are movable enough to undergo shape transitions along geometrical ranges. Blocks connect to each other and assemble into polymorphic ring-shaped clusters via the stacking of DNA blunt-ends. Reconfiguration of the polymorphic clusters is achieved by the surface diffusion on mica substrate in response to a monovalent salt concentration. This work could inspire novel reconfigurable self-assembling systems for applications in molecular robotics.
机译:能够动态改变其形状的自组装分子构建基块是一个为可重构系统提供途径的概念。尽管模拟研究预测了可用于各种领域的新颖特性,但到目前为止,尚未使用分子来实现此类构造单元。在这里,我们报告通过DNA自组装制造的形状可变的构建基块。块可移动得足以沿几何范围进行形状转换。块彼此连接,并通过堆叠DNA钝端组装成多态的环状簇。通过响应于一价盐浓度在云母基底上的表面扩散来实现多晶簇的重构。这项工作可能会激发新颖的可重构自组装系统在分子机器人中的应用。

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