Nano Pillar Array 사출성형을 이용한 DNA 분리 칩 개발

Development of the DNA Sequencing Chip with Nano Pillar Array using Injection Molding

  • Kim S.K. (Korea Institute of Machinery and Materials (KIMM)) ;
  • Choi D.S. (Korea Institute of Machinery and Materials (KIMM)) ;
  • Yoo Y.E. (Korea Institute of Machinery and Materials (KIMM)) ;
  • Je T.J. (Korea Institute of Machinery and Materials (KIMM)) ;
  • Kim T.H. (Korea Institute of Machinery and Materials (KIMM)) ;
  • Whang K.Y. (Korea Institute of Machinery and Materials (KIMM))
  • 발행 : 2005.06.01

초록

In recent, injection molding process for features in sub-micron scale is under active development as patterning nano-scale features, which can provide the master or stamp for molding, and becomes available around the world. Injection molding has been one of the most efficient processes for mass production of the plastic product, and this process is already applied to nano-technology products successfully such as optical storage media like DVD or BD which is a large area plastic thin substrate with nano-scale features on its surface. Bio chip for like DNA sequencing may be another application of this plastic substrate. The DNA can be sequenced using order of 100 nm pore structure when making the DNA flow through the pore structure. Agarose gel and silicon based chip have been used to sequence the DNA, but injection molded plastic chip may have benefit in terms of cost. This plastic DNA sequencing chip has plenty of pillars in order of 100 nm in diameter on the substrate. When the usual features in case of DVD or BD have very low aspect ratio, even less than 0.5, but the DNA chip will have relatively high aspect ratio of about 2. It is not easy to injection mold the large area thin substrate with sub-micron features on its surface due to the characteristics of the molding process and it becomes much more difficult when the aspect ratio of the features becomes high. We investigated the effect of the molding parameters for injection molding with high aspect ratio nano-scale features and injection molded some plastic DNA sequencing chips. We also fabricated PR masters and Ni stamps of the DNA chip to be used for molding

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