Emergence of Chirality from Isotropic Interactions of Three Length Scales

Chirality is known to play a pivotal role in determining material properties and functionalities. However, it remains a great challenge to understand and control the emergence of chirality and the related enantioselective process particularly when the building components of the system are achiral. H...

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Veröffentlicht in:Physical review letters 2016-05, Vol.116 (20), p.205502-205502, Article 205502
Hauptverfasser: Mkhonta, S K, Elder, K R, Huang, Zhi-Feng
Format: Artikel
Sprache:eng
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Zusammenfassung:Chirality is known to play a pivotal role in determining material properties and functionalities. However, it remains a great challenge to understand and control the emergence of chirality and the related enantioselective process particularly when the building components of the system are achiral. Here we explore the generic mechanisms driving the formation of two-dimensional chiral structures in systems characterized by isotropic interactions and three competing length scales. We demonstrate that starting from isotropic and rotationally invariant interactions, a variety of chiral ordered patterns and superlattices with anisotropic but achiral units can self-assemble. The mechanisms for selecting specific states are related to the length-scale coupling and the selection of resonant density wave vectors. Sample phase diagrams and chiral elastic properties are identified. These findings provide a viable route for predicting chiral phases and selecting the desired handedness.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.116.205502