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Non‐Equilibrium Self‐Assembly of Monocomponent and Multicomponent Tubular Structures in Rotating Fluids
Advanced Materials ( IF 27.4 ) Pub Date : 2017-11-07 , DOI: 10.1002/adma.201704274
Taehoon Lee 1, 2 , Konrad Gizynski 1 , Bartosz A. Grzybowski 1, 2
Affiliation  

When suspended in a denser rotating fluid, lighter particles experience a cylindrically symmetric confining potential that drives their crystallization into either monocomponent or unprecedented binary tubular packing. These assemblies form around the fluid's axis of rotation, can be dynamically interconverted (upon accelerating or decelerating the fluid), can exhibit preferred chirality, and can be made permanent by solidifying the fluid. The assembly can be extended to fluids forming multiple concentric interfaces or to systems of bubbles forming both ordered and “gradient” structures within curable polymers.

中文翻译:

旋转流体中单组分和多组分管状结构的非平衡自组装

当悬浮在较稠密的旋转流体中时,较轻的颗粒会经历圆柱对称的限制电位,从而驱动其结晶成单组分或空前的二元管状填料。这些组件围绕流体的旋转轴形成,可以动态地相互转换(在加速或减速流体时),可以表现出较好的手性,并且可以通过固化流体而永久化。该组件可以扩展到形成多个同心界面的流体,或者扩展到在可固化聚合物中形成有序和“梯度”结构的气泡系统。
更新日期:2017-11-07
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