4.8 Article

Free-surface molecular command systems for photoalignment of liquid crystalline materials

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NATURE COMMUNICATIONS
卷 5, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms4320

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  1. (KAKENHI) for Basic Research [23225003, 25286025]
  2. Program for Leading Graduate School 'Integrative Graduate Education and Research in Green Natural Sciences', MEXT, Japan
  3. [25810117]
  4. Grants-in-Aid for Scientific Research [25810117, 23225003, 25286025] Funding Source: KAKEN

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The orientation of liquid crystal molecules is very sensitive towards contacting surfaces, and this phenomenon is critical during the fabrication of liquid crystal display panels, as well as optical and memory devices. To date, research has focused on designing and modifying solid surfaces. Here we report an approach to control the orientation of liquid crystals from the free (air) surface side: a skin layer at the free surface was prepared using a non-photoresponsive liquid crystalline polymer film by surface segregation or inkjet printing an azobenzene-containing liquid crystalline block copolymer. Both planar-planar and homoeotropic-planar mode patterns were readily generated. This strategy is applicable to various substrate systems, including inorganic substrates and flexible polymer films. These versatile processes require no modification of the substrate surface and are therefore expected to provide new opportunities for the fabrication of optical and mechanical devices based on liquid crystal alignment.

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