Trajectory engineering of directrons in liquid crystals photoalignment

As electrically generated solitons in liquid crystals, directrons represent intriguing structures promising extensive application prospects in the areas of microcargo vehicles, microreactors, and logic devices. However, manipulating directrons along elaborate predetermined trajectories still remains...

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Veröffentlicht in:Soft matter 2023-06, Vol.19 (24), p.4483-449
Hauptverfasser: Wu, Ke-Hui, Chen, Chang-Qi, Shen, Yuan, Cao, Yu, Li, Sen-Sen, Dierking, Ingo, Chen, Lu-Jian
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Zusammenfassung:As electrically generated solitons in liquid crystals, directrons represent intriguing structures promising extensive application prospects in the areas of microcargo vehicles, microreactors, and logic devices. However, manipulating directrons along elaborate predetermined trajectories still remains to be largely explored. In this work, the strategy of constructing high-resolution periodic alignment fields for directrons via the polarization holography photoalignment technique is presented. The optimum exposure dose for directrons to form over a broad range of electric fields is determined to be 32.4 J cm −2 for the alignment layers with 1 wt% azo dye SD1. Zigzag and fishhook-shaped trajectories of directrons are realized with two orthogonal polarized beams. The resolution for zigzag steering of directrons is evaluated to be approximately 56 μm to 80 μm, about three to four times the length of directrons. These results not only enrich the forms of motion of directrons, but also lay the foundations for customized trajectories of directrons in future developments. We present the trajectory control of directrons guided by the alignment fields created through polarization holography. The zigzag and fishhook-shaped trajectories of directrons have been achieved. The resolution for zigzag manipulation of directrons is also evaluated.
ISSN:1744-683X
1744-6848
DOI:10.1039/d3sm00377a