TY - JOUR
T1 - Fabrication of photonic crystal structures by femtosecond laser-induced photopolymerization of organic-inorganic film
AU - Segawa, Hiroyo
AU - Yoshida, Kazuaki
AU - Kondo, Toshiaki
AU - Matsuo, Shigeki
AU - Misawa, Hiroaki
PY - 2003/1
Y1 - 2003/1
N2 - We report on a fabrication of photonic crystal structures in organic-inorganic hybrid films by a laser interference technique. Films containing the methacrylic group, which is photopolymerable by an adequate laser light, are prepared using a sol-gel technique from a mixture of organosilicate alkoxide and zirconium alkoxide modified by methacrylic acid. For the photopolymerization, the coated films on glass substrate are exposed to the interference light which is arranged with a square lattice in about 1 μm spacing. From microscopic images of microstructures produced by the photopolymerization, the influence of changes in conditions such as pre-bake temperature, photoinitiator and irradiation energy (laser power and duration time) on periodic structure is investigated. Adjusting the conditions, 2D and 3D photonic crystal structures with the micrometer-order period are formed in organo-silicate-zirconate hybrid materials.
AB - We report on a fabrication of photonic crystal structures in organic-inorganic hybrid films by a laser interference technique. Films containing the methacrylic group, which is photopolymerable by an adequate laser light, are prepared using a sol-gel technique from a mixture of organosilicate alkoxide and zirconium alkoxide modified by methacrylic acid. For the photopolymerization, the coated films on glass substrate are exposed to the interference light which is arranged with a square lattice in about 1 μm spacing. From microscopic images of microstructures produced by the photopolymerization, the influence of changes in conditions such as pre-bake temperature, photoinitiator and irradiation energy (laser power and duration time) on periodic structure is investigated. Adjusting the conditions, 2D and 3D photonic crystal structures with the micrometer-order period are formed in organo-silicate-zirconate hybrid materials.
KW - Hybrid material
KW - Laser interference technique
KW - Organo-silicate-zirconate
KW - Photonic crystal
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U2 - 10.1023/A:1020729917721
DO - 10.1023/A:1020729917721
M3 - Article
AN - SCOPUS:0037265416
SN - 0928-0707
VL - 26
SP - 1023
EP - 1027
JO - Journal of Sol-Gel Science and Technology
JF - Journal of Sol-Gel Science and Technology
IS - 1-3
ER -