3차원 그래핀 소자의 제작 방법 및 이를 포함한 센서
    2.
    发明授权
    3차원 그래핀 소자의 제작 방법 및 이를 포함한 센서 有权
    制造三维图形装置和包含其的传感器的方法

    公开(公告)号:KR101437289B1

    公开(公告)日:2014-09-02

    申请号:KR1020130097958

    申请日:2013-08-19

    Abstract: The present invention relates to a method of forming a three-dimensional graphene device by forming graphene on a three-dimensional microstructure a method of producing an electronic device, such as chemical/bio sensors by using the combination of a one-dimensional nanomaterial (nanowire and nanotube) and a zero-dimensional nanowire (nanoparticles and quantum dots). The three-dimensional microstructure is produced by a selective exposure technique of a light-sensitive polymer. The formation of the three-dimensional structure by the adsorption of a two-dimensional material including graphene is possible by the formation of an oxide film and the formation of a self-assembled monolayer. Further, the present invention includes a method of producing the zero-dimensional nanomaterial and the one-dimension nanomaterial on the three-dimensional graphene structure.

    Abstract translation: 本发明涉及一种通过在三维微结构上形成石墨烯来形成三维石墨烯装置的方法,该方法通过使用一维纳米材料(纳米线)的组合来生产电子器件,例如化学/生物传感器 和纳米管)和零维纳米线(纳米粒子和量子点)。 通过感光聚合物的选择性曝光技术产生三维微结构。 通过形成氧化膜并形成自组装单层,可以通过吸附包括石墨烯在内的二维材料形成三维结构。 此外,本发明包括在三维石墨烯结构上制造零维纳米材料和一维纳米材料的方法。

    자기조립 단분자층의 프린팅 방법을 이용한 환원된 산화 그래핀 패턴을 포함하는 바이오센서의 제조방법 및 이에 따라 제조된 바이오센서
    3.
    发明公开
    자기조립 단분자층의 프린팅 방법을 이용한 환원된 산화 그래핀 패턴을 포함하는 바이오센서의 제조방법 및 이에 따라 제조된 바이오센서 有权
    制备生物传感器的方法,使用自组装单层印刷机和生物传感器进行还原的石墨氧化物图案的制备

    公开(公告)号:KR1020120125906A

    公开(公告)日:2012-11-19

    申请号:KR1020110043645

    申请日:2011-05-09

    Abstract: PURPOSE: A method for manufacturing a bio sensor including restored oxide graphene patterns and the bio sensor manufactured by the same are provided to minimize contamination caused by impurities, thereby removing the influence of an electron caused by scattering impurities on a surface and a positive hole carrier. CONSTITUTION: A method for manufacturing a bio sensor including restored oxide graphene patterns comprises next steps. Self-assembled monolayer patterns(230) having a positive charge is formed on a surface of a base by using a printing method. A restored oxide graphene having a negative charge is absorbed to the self-assembled monolayer patterns formed on the surface of the base so that restored oxide graphene patterns(250) is formed. Electrodes(260) are formed in both end parts of the restore oxide graphene patterns. A biomaterial fixing bio-material immobilization linker(290) is formed on the restored oxide graphene patterns. Bio-materials are fixed to the bio-material immobilization linker.

    Abstract translation: 目的:提供一种用于制造包括恢复的氧化石墨烯图案的生物传感器和由其制造的生物传感器的方法,以最小化由杂质引起的污染,从而消除由表面和空穴载体上散射杂质引起的电子的影响 。 构成:用于制造包括恢复的氧化石墨烯图案的生物传感器的方法包括以下步骤。 通过使用印刷法在基材的表面上形成具有正电荷的自组装单层图案(230)。 具有负电荷的恢复的氧化石墨烯被吸收到形成在基底表面上的自组装单层图案,从而形成恢复的氧化石墨烯图案(250)。 电极(260)形成在恢复氧化石墨烯图案的两端部。 在恢复的氧化石墨烯图案上形成生物材料固定生物材料固定接头(290)。 将生物材料固定在生物材料固定接头上。

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