4.8 Article

Liquid-crystalline behavior on dumbbell-shaped colloids and the observation of chiral blue phases

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NATURE COMMUNICATIONS
卷 13, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41467-022-33125-y

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资金

  1. State Key Laboratory of Supramolecular Structure and Materials
  2. State Key Laboratory of Molecular Engineering of Polymers
  3. National Natural Science Foundation of China [22122203, 51973038, 21534004, 91963107, 21911530179, 52073114]
  4. National Key R&D Program of China [2018YFB0703701]
  5. Key-Area Research and Development Program of Guangdong Province [X200281AL200]
  6. Innovation Program of Shanghai Municipal Education Commission [2021-01-07-00-07-E00073]
  7. Program for JLU Science and Technology Innovative Research Team [JLUSTIRT2017TD-06]

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This study demonstrates that achiral dumbbell-shaped colloids can assemble into various liquid crystal phases, including blue phase III. Phase diagrams show that the existence and stability of liquid crystal phases depend on the geometrical parameters of colloids. This work opens a new route for the design and construction of blue phases in photonic applications.
Colloidal liquid crystals are an emerging class of soft materials that naturally combine the unique properties of both liquid crystal molecules and colloidal particles. Chiral liquid crystal blue phases are attractive for use in fast optical displays and electrooptical devices, but the construction of blue phases is limited to a few chiral building blocks and the formation of blue phases from achiral ones is often counterintuitive. Herein we demonstrate that achiral dumbbell-shaped colloids can assemble into a rich variety of characteristic liquid crystal phases, including nematic phases with lock structures, smectic phase, and particularly experimental observation of blue phase III with double-twisted chiral columns. Phase diagrams from experiments and simulations show that the existence and stable regions of different liquid crystal phases are strongly dependent on the geometrical parameters of dumbbell-shaped colloids. This work paves a new route to the design and construction of blue phases for photonic applications. Colloidal liquid crystals account for various applications due to the combination of characteristics relevant for liquid crystals and colloids. The authors elaborate the impact of concave geometry on the properties of colloidal liquid crystals for development of functional materials.

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