Fabrication of Glassy Carbon Molds Using Hydrogen Silsequioxane Patterned by Electron Beam Lithography as O2 Dry Etching Mask
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概要
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Glass is a good candidate material for optical devices because of its enhanced optical properties, the technique of die machining has not been established for the hot embossing of glass. In this study, we used the glassy carbon (GC) mold for the hot embossing of glass. An inductively coupled plasma reactive ion etching (ICP–RIE) using oxygen plasma was employed for the submicron structuring of the GC mold. Hydrogen silsesquioxane (HSQ) is a negative-type electron beam (EB) resist used to be resistant to oxygen plasma. HSQ patterns drawn by electron beam lithography (EBL) were used as the O2 dry etching mask. The etching selectivity between HSQ and GC was 35. The average of the extent of side etching was 40 nm at a depth of 300 nm. The side etching functioning as the draft angle was caused mainly by oxygen radicals, because HSQ patterns remained even after GC patterns were side-etched. We confirmed that the GC mold fabricated by O2 dry etching can be used for glass hot embossing. Since the mold lubricant was not rubbed on the mold surface, GC is the appropriate mold material for Pyrex glass.
- 2008-06-25
著者
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Sugimoto Koh-ichi
Department Of Clinical Pharmacology Jichi Medical College
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HIRABAYASHI Yasuo
Kanagawa Industrial Technology Research Institute
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Kaneko Satoru
Kanagawa Industrial Technol. Center Kanagawa Jpn
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Takahashi Masaharu
Advanced Manufacturing Research Institute National Institute Of Advanced Industrial Science And Tech
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Maeda Ryutaro
Advanced Manufacturing Research Institute, National Institute of Advanced Industrial Science and Technology, 1-2-1 Namiki, Tsukuba, Ibaraki 305-8564, Japan
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Yasui Manabu
Kanagawa Industrial Technology Center, 705-1 Shimoimaizumi, Ebina, Kanagawa 243-0435, Japan
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Uegaki Jun-ichi
Elionix Inc., 3-7-6 Motoyokoyama, Hachioji, Tokyo 192-0063, Japan
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Maeda Ryutaro
Advanced Manufacturing Research Institute (AMRI), National Institute of Advanced Industrial Science and Technology (AIST), 1-2-1 Namiki, Tsukuba, Ibaraki 305-8564, Japan
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Sugiyama Yoshinari
Elionix Inc., 3-7-6 Motoyokoyama, Hachioji, Tokyo 192-0063, Japan
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Hirabayashi Yasuo
Kanagawa Industrial Technology Center, 705-1 Shimoimaizumi, Ebina, Kanagawa 243-0435, Japan
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Kaneko Satoru
Kanagawa Industrial Technology Center, 705-1 Shimoimaizumi, Ebina, Kanagawa 243-0435, Japan
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Takahashi Masaharu
Advanced Manufacturing Research Institute (AMRI), National Institute of Advanced Industrial Science and Technology (AIST), 1-2-1 Namiki, Tsukuba, Ibaraki 305-8564, Japan
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Sugimoto Koh-ichi
Department of Mechanical Systems Engineering, Faculty of Engineering, Shinshu University, 4-17-1 Wakasato, Nagano 380-8553, Japan
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