DOE OSTI · 2865313
Reconfigurable structural color by reversible switching of colloidal discoid liquid crystal alignment
Abstract
Combining the effects of alternating-current (AC) electric fields and sedimentation reconfigures colloidal discoids between planar and homeotropic orientational alignments, thereby controlling the material’s structural color. Here, we self-assemble micrometer-size polystyrene discoids in an isopropanol-water mixture. After sedimentation, the discoids adopt a homeotropic alignment, with the minor axis perpendicular to the substrate. Adding an AC electric field (1 kHz) of ≥0.50 V switches the discoids to planar alignment—with the minor axis parallel to the substrate—within ∼100 s. Removing the field switches them back to homeotropic alignment within ∼300 s. Kinetic modeling of the field-induced torques yields good agreement with these measurements. The peak wavelength and intensity of the crystal’s diffraction response shift significantly upon reconfiguration; scattering simulation predicts these shifts. The reconfiguration is maintained for at least 10 cycles. This method is a simple, scalable avenue to reconfigure the optical properties of colloidal crystals produced from simple dielectric spheroids.
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Mohd Khairi, Syahidah [Univ. of Michigan, Ann Arbor, MI (United States)] (ORCID:0000000189862974), Solomon, Michael J. [Univ. of Michigan, Ann Arbor, MI (United States)] (ORCID:000000018312257X). 2025-10-31. Reconfigurable structural color by reversible switching of colloidal discoid liquid crystal alignment. https://doi.org/10.1016/j.xcrp.2025.102926
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