• Title of article

    Photopatternable and refractive-index-tunable sol–gel-derived silica–titania nanohybrid materials

  • Author/Authors

    Kang، نويسنده , , Dong-Jun and Park، نويسنده , , Go Un and Lee، نويسنده , , Hyeon Hwa and Park، نويسنده , , Hoy Yul and Park، نويسنده , , Jang-Ung، نويسنده ,

  • Issue Information
    ماهنامه با شماره پیاپی سال 2013
  • Pages
    6
  • From page
    1732
  • To page
    1737
  • Abstract
    Silica–titania nanohybrid materials were synthesized using functionalized organosilanes and organically chelated titanium alkoxide in a simple sol–gel process. The synthesized silica–titania nanohybrid materials exhibited good solution processability and homogeneous dispersion without any phase separation regardless of the ratio of the mixture of the two components. The silica–titania nanohybrid materials exhibited good photoinitiator solubility and effective photocurability with a high degree of degree under ultraviolet (UV) exposure. Because of their high photocurability and solution processability, the silica–titania nanohybrid materials were readily converted into silica–titania nanohybrid films and were used for direct photopatterning without requiring the developing process used in the photomask method. In particular, the refractive indices of the silica–titania nanohybrid materials could be decreased by decreasing the content of chelated titanium alkoxide in the materials. Moreover, the silica–titania nanohybrid films exhibited high transmittance in the visible wavelength range, and their surface roughnesses were very smooth, exhibiting values <1 nm. On the basis of these observations, the fabricated silica–titania nanohybrid materials can be used in solution-processable materials for producing optical and electro-optical elements.
  • Keywords
    Silica–titania , Organosilane , photopatterning , Refractive index , Nanohybrid materials
  • Journal title
    Current Applied Physics
  • Serial Year
    2013
  • Journal title
    Current Applied Physics
  • Record number

    1791257