首页> 外国专利> A Nano Capillary Channel for Filtering Biomaterials, a Method of Preparation Thereof and a Filtering Method of Blood Cell in Whole Blood Using Thereof

A Nano Capillary Channel for Filtering Biomaterials, a Method of Preparation Thereof and a Filtering Method of Blood Cell in Whole Blood Using Thereof

机译:用于过滤生物材料的纳米毛细管通道,其制备方法以及使用该通道的全血中血细胞的过滤方法

摘要

The present invention relates to a micro-biological material kepi gallery channel for separation, and more particularly to a base substrate; At least one upper plate to be laminated on the base substrate; A spacer for forming a spacing between the base plate and the upper plate (spacer); And a seal for sealing the sides of the base substrate and the top plate (seal) relates to kepi gallery channel for separating the biological material comprising the fine. According to the present invention, the base substrate and the top plate between a nanometer (nm), using the size of the spacer to form a gap, and by separating the fine particles through which, as in the prior art without a separate power source and expensive equipment, simple and economical a quick separation can be a large amount of fine particles, also do not use a semiconductor process, in particular photo etching method (photo lithography) in the manufacture of micro-biological material kepi gallery channel for separation, much simpler and faster micro-biological material The kepi library channel (capillary channel) for separating the effect that can be produced.
机译:本发明涉及一种用于分离的微生物材料的开皮通道,特别是涉及一种基础基材。至少一个上板要层压在基础基板上;用于在基板和上板之间形成间隔的间隔件(间隔件);并且,用于密封基础基板和顶板(密封件)的侧面的密封件涉及用于分离包括细料的生物材料的凯皮通道。根据本发明,基础衬底和顶板之间在一个纳米(nm)之间,利用间隔物的尺寸形成间隙,并通过分离细小颗粒,如现有技术中那样,没有单独的电源昂贵的设备,简单且经济的快速分离方法可以分离大量的细小颗粒,也不需要使用半导体工艺,特别是在制造微生物材料的kepi通道进行分离时,不使用光蚀刻法(photo lithography),更简单,更快速的微生物材料kepi库通道(毛细管通道)用于分离可以产生的作用。

著录项

  • 公开/公告号KR101069709B1

    专利类型

  • 公开/公告日2011-10-04

    原文格式PDF

  • 申请/专利权人

    申请/专利号KR20090018564

  • 发明设计人 엄년식;정봉현;

    申请日2009-03-04

  • 分类号G01N37/00;G01N33/49;

  • 国家 KR

  • 入库时间 2022-08-21 17:49:40

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