Magneto-Responsive Chiral Optical Materials: Flow-Induced Twisting of Cellulose Nanocrystals in Patterned Magnetic Fields

材料科学 纳米晶 液晶 涡流 溶致性 纳米技术 凝聚态物理 磁场 旋转磁场 蒸发 光电子学 光学 化学物理 液晶 机械 化学 物理 量子力学 热力学
作者
Minkyu Kim,Jisoo Jeon,Kellina J. Pierce,Daria Bukharina,Woosung Choi,Jinyoung Choi,Dhriti Nepal,Michael E. McConney,Timothy J. Bunning,Vladimir V. Tsukruk
出处
期刊:ACS Nano [American Chemical Society]
卷期号:18 (37): 25512-25521
标识
DOI:10.1021/acsnano.4c05320
摘要

Magnetic fields have been used to uniformly align the lyotropic chiral nematic (cholesteric) liquid crystalline (LC) phase of biopolymers to a global orientation and optical appearance. Here, we demonstrate that, in contrast, weak and patterned magnetic field gradients can create a complex optical appearance with the variable spatial local organization of needle-like magnetically decorated cellulose nanocrystals. The formation of optically patterned thin films with left- and right-handed chiral and achiral regions is observed and related to local magnetic gradient-driven vortices during LC suspension flow. We trace the localized flow directions of the magnetically decorated nanocrystals during evaporation-induced assembly, demonstrating how competing evaporation and field-induced localized flow affect the twisted organization within magnetically induced vortices. The simulations suggested that localized twisting inversion originates from the interplay between the direction and strength of the local-depth-related magnetic gradients and the receding front through peripheral magnetic gaps. We propose that this finding will lead to magnetically patterned photonic films.
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