Micro/nano-Hot Embossing of Quartz Glass Materials with Glassy Carbon Mold Prepared by Focused Ion Beam
Bibliographic Information
- Other Title
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- FIB加工によるカーボン型を用いた石英ガラスのマイクロ・ナノ成形
- FIB カコウ ニ ヨル カーボンガタ オ モチイタ セキエイ ガラス ノ マイクロ ナノ セイケイ
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Description
Micro/nano-imprinting or micro/nano-hot embossing is a target of interest for the industrial production of micro and nano-devices. In fluidic micro electro mechanical system (MEMS) applications, polymer materials have been employed for the fabrication of low-cost products. However, glass is much more suitable for high-temperature applications and adverse chemical environments. Also, in optical MEMS glass is a good candidate material with which to achieve good optical properties. Si or Ni molds, usually employed for polymer forming, can no longer be used for glass forming owing to their poor heat resistance and the difficulty in removing them arising from the cohesion between the mold and glass. Glassy carbon (GC) is therefore a suitable material for high-temperature embossing. In this study, focused ion beam (FIB) machining was employed for the micro/nano-3D structuring of GC materials. The machining features of these materials are summarized as follows; 1) Nanomachining at a 0.5 μm resolution was possible. 2) A smooth surface with a maximum roughness of up to Ra 27 nm was formed after 22 μm depth machining. 3) Implanted Ga ions precipitated at 350°C annealing but disappeared after annealing in vacuum at an a high elevated temperature (1400°C). Finally, a quartz glass embossed structure was successfully fabricated by hot embossing with a high fidelity of 10x10x5 μm, a 0.5 μm line-and-space pattern and a 0.4 μm depth.
Journal
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- Journal of the Japan Society for Technology of Plasticity
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Journal of the Japan Society for Technology of Plasticity 47 (549), 958-962, 2006
The Japan Society for Technology of Plasticity
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Keywords
Details 詳細情報について
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- CRID
- 1390001206499354880
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- NII Article ID
- 10018106269
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- NII Book ID
- AN00135062
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- COI
- 1:CAS:528:DC%2BD28Xht1agtbzP
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- ISSN
- 18820166
- 00381586
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- NDL BIB ID
- 8553422
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- Text Lang
- ja
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- Data Source
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- JaLC
- NDL
- Crossref
- CiNii Articles
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- Abstract License Flag
- Disallowed