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Iridescence in nematics: Photonic liquid crystals of nanoplates in absence of long-range periodicity.


ABSTRACT: Photonic materials with positionally ordered structure can interact strongly with light to produce brilliant structural colors. Here, we found that the nonperiodic nematic liquid crystals of nanoplates can also display structural color with only significant orientational order. Owing to the loose stacking of the nematic nanodiscs, such colloidal dispersion is able to reflect a broad-spectrum wavelength, of which the reflection color can be further enhanced by adding carbon nanoparticles to reduce background scattering. Upon the addition of electrolytes, such vivid colors of nematic dispersion can be fine-tuned via electrostatic forces. Furthermore, we took advantage of the fluidity of the nematic structure to create a variety of colorful arts. It was expected that the concept of implanting nematic features in photonic structure of lyotropic nanoparticles may open opportunities for developing advanced photonic materials for display, sensing, and art applications.

SUBMITTER: Zeng M 

PROVIDER: S-EPMC6744873 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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Iridescence in nematics: Photonic liquid crystals of nanoplates in absence of long-range periodicity.

Zeng Minxiang M   King Daniel D   Huang Dali D   Do Changwoo C   Wang Ling L   Chen Mingfeng M   Lei Shijun S   Lin Pengcheng P   Chen Ying Y   Cheng Zhengdong Z  

Proceedings of the National Academy of Sciences of the United States of America 20190823 37


Photonic materials with positionally ordered structure can interact strongly with light to produce brilliant structural colors. Here, we found that the nonperiodic nematic liquid crystals of nanoplates can also display structural color with only significant orientational order. Owing to the loose stacking of the nematic nanodiscs, such colloidal dispersion is able to reflect a broad-spectrum wavelength, of which the reflection color can be further enhanced by adding carbon nanoparticles to reduc  ...[more]

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