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Design principles for Bernal spirals and helices with tunable pitch.

机译:节距可调的Bernal螺旋和螺旋设计原理。

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摘要

Using the framework of potential energy landscape theory, we describe two in silico designs for self-assembling helical colloidal superstructures based upon dipolar dumbbells and Janus-type building blocks, respectively. Helical superstructures with controllable pitch length are obtained using external magnetic field driven assembly of asymmetric dumbbells involving screened electrostatic as well as magnetic dipolar interactions. The pitch of the helix is tuned by modulating the Debye screening length over an experimentally accessible range. The second design is based on building blocks composed of rigidly linked spheres with short-range anisotropic interactions, which are predicted to self-assemble into Bernal spirals. These spirals are quite flexible, and longer helices undergo rearrangements via cooperative, hinge-like moves, in agreement with experiment.
机译:使用势能景观理论的框架,我们分别描述了两种基于偶极哑铃和Janus型构件的自组装螺旋胶体超结构的计算机设计。使用外部磁场驱动的非对称哑铃组件,包括屏蔽的静电以及磁偶极相互作用,可以获得螺距长度可控的螺旋上部结构。螺旋的螺距可通过在实验上可达到的范围内调节Debye筛选长度来进行调节。第二种设计基于由具有短距离各向异性相互作用的刚性链接球组成的构建基块,这些球体预计将自组装成Bernal螺旋。这些螺旋线非常灵活,与实验相一致,较长的螺旋线会通过类似铰链的协同运动进行重排。

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