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    • 3. 发明授权
    • Ion exchangeable mixture and method of producing the same
    • 可离子交换混合物及其制备方法
    • US08519014B2
    • 2013-08-27
    • US13605503
    • 2012-09-06
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • B01J49/00C08J5/20C01B31/16
    • C08J5/2218B01J39/20B01J41/14B01J47/016B01J47/12B01L3/5027C08J5/20
    • An ion exchangeable mixture containing a polymeric compound consisting of an ion exchange resin, an acrylamide mixture containing at least one bisacrylamide and at least one acrylamide, and a copolymer obtained by reacting the polymeric compound with the acrylamide mixture, and a method of producing the same are provided. The ion exchangeable membrane produced by using the ion exchangeable mixture has significantly smaller electric resistance than conventional ion exchangeable membranes, and has excellent selective permeability because the ion exchangeable membrane is electrically charged. The ion exchangeable membrane can be produced under very mild production conditions, and thus can be produced very easily. Furthermore, the ion exchangeable membrane can be also formed into film during a crosslinking reaction in a solvent of water, and thus is advantageous in that the ion exchangeable membrane can be freely produced into desired sizes, shapes and forms.
    • 含有由离子交换树脂,含有至少一种双丙烯酰胺和至少一种丙烯酰胺的丙烯酰胺混合物组成的聚合物的离子交换性混合物和通过使聚合物与丙烯酰胺混合物反应得到的共聚物及其制造方法 被提供。 通过使用离子交换性混合物制造的离子交换膜的电阻比常规的离子交换膜的电阻小得多,并且由于可离子交换膜带电而具有优异的选择性渗透性。 离子交换膜可以在非常温和的生产条件下生产,因此可以非常容易地生产。 此外,在水的溶剂中的交联反应期间,也可以将离子交换膜形成为膜,因此有利的是可离子交换膜可以自由地制成所需的尺寸,形状和形状。
    • 5. 发明申请
    • ION EXCHANGEABLE MIXTURE AND METHOD OF PRODUCING THE SAME
    • 离子交换混合物及其制造方法
    • US20120329891A1
    • 2012-12-27
    • US13605503
    • 2012-09-06
    • Hun-joo LEEJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • Hun-joo LEEJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • B01J39/18
    • C08J5/2218B01J39/20B01J41/14B01J47/016B01J47/12B01L3/5027C08J5/20
    • An ion exchangeable mixture containing a polymeric compound consisting of an ion exchange resin, an acrylamide mixture containing at least one bisacrylamide and at least one acrylamide, and a copolymer obtained by reacting the polymeric compound with the acrylamide mixture, and a method of producing the same are provided. The ion exchangeable membrane produced by using the ion exchangeable mixture has significantly smaller electric resistance than conventional ion exchangeable membranes, and has excellent selective permeability because the ion exchangeable membrane is electrically charged. The ion exchangeable membrane can be produced under very mild production conditions, and thus can be produced very easily. Furthermore, the ion exchangeable membrane can be also formed into film during a crosslinking reaction in a solvent of water, and thus is advantageous in that the ion exchangeable membrane can be freely produced into desired sizes, shapes and forms.
    • 含有由离子交换树脂,含有至少一种双丙烯酰胺和至少一种丙烯酰胺的丙烯酰胺混合物组成的聚合物的离子交换性混合物和通过使聚合物与丙烯酰胺混合物反应得到的共聚物及其制造方法 被提供。 通过使用离子交换性混合物制造的离子交换膜的电阻比常规的离子交换膜的电阻小得多,并且由于可离子交换膜带电而具有优异的选择性渗透性。 离子交换膜可以在非常温和的生产条件下生产,因此可以非常容易地生产。 此外,在水的溶剂中的交联反应期间,也可以将离子交换膜形成为膜,因此有利的是可离子交换膜可以自由地制成所需的尺寸,形状和形状。
    • 6. 发明授权
    • Ion exchangeable mixture and method of producing the same
    • 可离子交换混合物及其制备方法
    • US08263671B2
    • 2012-09-11
    • US13086741
    • 2011-04-14
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • B01J49/00C08J5/20C01B31/16
    • C08J5/2218B01J39/20B01J41/14B01J47/016B01J47/12B01L3/5027C08J5/20
    • An ion exchangeable mixture containing a polymeric compound consisting of an ion exchange resin, an acrylamide mixture containing at least one bisacrylamide and at least one acrylamide, and a copolymer obtained by reacting the polymeric compound with the acrylamide mixture, and a method of producing the same are provided. The ion exchangeable membrane produced by using the ion exchangeable mixture has significantly smaller electric resistance than conventional ion exchangeable membranes, and has excellent selective permeability because the ion exchangeable membrane is electrically charged. The ion exchangeable membrane can be produced under very mild production conditions, and thus can be produced very easily. Furthermore, the ion exchangeable membrane can be also formed into film during a crosslinking reaction in a solvent of water, and thus is advantageous in that the ion exchangeable membrane can be freely produced into desired sizes, shapes and forms.
    • 含有由离子交换树脂,含有至少一种双丙烯酰胺和至少一种丙烯酰胺的丙烯酰胺混合物组成的聚合物的离子交换性混合物和通过使聚合物与丙烯酰胺混合物反应得到的共聚物及其制造方法 被提供。 通过使用离子交换性混合物制造的离子交换膜的电阻比常规的离子交换膜的电阻小得多,并且由于可离子交换膜带电而具有优异的选择性渗透性。 离子交换膜可以在非常温和的生产条件下生产,因此可以非常容易地生产。 此外,在水的溶剂中的交联反应期间,也可以将离子交换膜形成为膜,因此有利的是可离子交换膜可以自由地制成所需的尺寸,形状和形状。
    • 7. 发明授权
    • Method of manufacturing DNA chip
    • 制造DNA芯片的方法
    • US07700290B2
    • 2010-04-20
    • US11479306
    • 2006-06-30
    • Jeo-young ShimSoo-suk LeeChin-sung ParkKyu-youn Hwang
    • Jeo-young ShimSoo-suk LeeChin-sung ParkKyu-youn Hwang
    • C12Q1/68C12M1/00C12M3/00
    • B01L3/50857B01L2200/12B01L2300/0636B01L2300/0819B82Y10/00G01N27/4145H01L21/823828H01L51/0093H01L51/0545Y10T436/2575
    • A method of manufacturing a DNA (deoxyribonucleic acid) chip is provided. The DNA chip has a plurality of transistors formed on a substrate and an organic layer and a DNA probe sequentially stacked on a gate of the transistor. The method includes forming an inter-layer insulation layer on the substrate to cover the transistors, planarizing the inter-layer insulation layer, forming at least two contact holes exposing gate electrodes of the transistors in the inter-layer insulation layer, selectively forming organic layers on the exposed gate electrodes, attaching a first DFR (dry film resist) layer to the upper surface of the inter-layer insulation layer to cover the contact holes, removing a portion of the first DFR layer covering a first contact hole among the contact holes, attaching a first DNA probe to the organic layers in the first contact hole, and removing a remaining portion of the first DFR layer.
    • 提供了DNA(脱氧核糖核酸)芯片的制造方法。 DNA芯片具有形成在基板上的多个晶体管,并且顺序层叠在晶体管的栅极上的有机层和DNA探针。 该方法包括在衬底上形成层间绝缘层以覆盖晶体管,平坦化层间绝缘层,形成暴露在层间绝缘层中的晶体管的栅电极的至少两个接触孔,选择性地形成有机层 在暴露的栅电极上,将第一DFR(干膜抗蚀剂)层附着到层间绝缘层的上表面以覆盖接触孔,去除覆盖接触孔中的第一接触孔的第一DFR层的一部分 将第一DNA探针连接到第一接触孔中的有机层,以及去除第一DFR层的剩余部分。
    • 8. 发明授权
    • Ion exchangeable mixture and method of producing the same
    • 可离子交换混合物及其制备方法
    • US07947196B2
    • 2011-05-24
    • US11453116
    • 2006-06-14
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • Hun-joo LeeJi-na NamgoongSoo-suk LeeJoon-ho Kim
    • C01B31/16
    • C08J5/2218B01J39/20B01J41/14B01J47/016B01J47/12B01L3/5027C08J5/20
    • An ion exchangeable mixture containing a polymeric compound consisting of an ion exchange resin, an acrylamide mixture containing at least one bisacrylamide and at least one acrylamide, and a copolymer obtained by reacting the polymeric compound with the acrylamide mixture, and a method of producing the same are provided. The ion exchangeable membrane produced by using the ion exchangeable mixture has significantly smaller electric resistance than conventional ion exchangeable membranes, and has excellent selective permeability because the ion exchangeable membrane is electrically charged. The ion exchangeable membrane can be produced under very mild production conditions, and thus can be produced very easily. Furthermore, the ion exchangeable membrane can be also formed into film during a crosslinking reaction in a solvent of water, and thus is advantageous in that the ion exchangeable membrane can be freely produced into desired sizes, shapes and forms.
    • 含有由离子交换树脂,含有至少一种双丙烯酰胺和至少一种丙烯酰胺的丙烯酰胺混合物组成的聚合物的离子交换性混合物和通过使聚合物与丙烯酰胺混合物反应得到的共聚物及其制造方法 被提供。 通过使用离子交换性混合物制造的离子交换膜的电阻比常规的离子交换膜的电阻小得多,并且由于可离子交换膜带电而具有优异的选择性渗透性。 离子交换膜可以在非常温和的生产条件下生产,因此可以非常容易地生产。 此外,在水的溶剂中的交联反应期间,也可以将离子交换膜形成为膜,因此有利的是可离子交换膜可以自由地制成所需的尺寸,形状和形状。
    • 9. 发明申请
    • Method of manufacturing DNA chip
    • 制造DNA芯片的方法
    • US20070003967A1
    • 2007-01-04
    • US11479306
    • 2006-06-30
    • Jeo-young ShimSoo-suk LeeChin-sung ParkKyu-youn Hwang
    • Jeo-young ShimSoo-suk LeeChin-sung ParkKyu-youn Hwang
    • C12Q1/68
    • B01L3/50857B01L2200/12B01L2300/0636B01L2300/0819B82Y10/00G01N27/4145H01L21/823828H01L51/0093H01L51/0545Y10T436/2575
    • A method of manufacturing a DNA (deoxyribonucleic acid) chip is provided. The DNA chip has a plurality of transistors formed on a substrate and an organic layer and a DNA probe sequentially stacked on a gate of the transistor. The method includes forming an inter-layer insulation layer on the substrate to cover the transistors, planarizing the inter-layer insulation layer, forming at least two contact holes exposing gate electrodes of the transistors in the inter-layer insulation layer, selectively forming organic layers on the exposed gate electrodes, attaching a first DFR (dry film resist) layer to the upper surface of the inter-layer insulation layer to cover the contact holes, removing a portion of the first DFR layer covering a first contact hole among the contact holes, attaching a first DNA probe to the organic layers in the first contact hole, and removing a remaining portion of the first DFR layer.
    • 提供了DNA(脱氧核糖核酸)芯片的制造方法。 DNA芯片具有形成在基板上的多个晶体管,并且顺序层叠在晶体管的栅极上的有机层和DNA探针。 该方法包括在衬底上形成层间绝缘层以覆盖晶体管,平坦化层间绝缘层,形成暴露在层间绝缘层中的晶体管的栅电极的至少两个接触孔,选择性地形成有机层 在暴露的栅电极上,将第一DFR(干膜抗蚀剂)层附着到层间绝缘层的上表面以覆盖接触孔,去除覆盖接触孔中的第一接触孔的第一DFR层的一部分 将第一DNA探针连接到第一接触孔中的有机层,以及去除第一DFR层的剩余部分。