전기영동 입자 및 이를 이용한 전기영동 디스플레이
    31.
    发明公开
    전기영동 입자 및 이를 이용한 전기영동 디스플레이 审中-实审
    电泳颗粒和使用电泳颗粒的电泳显示

    公开(公告)号:KR1020140069555A

    公开(公告)日:2014-06-10

    申请号:KR1020120136953

    申请日:2012-11-29

    CPC classification number: G02F1/167 G02F2001/1678

    Abstract: An electrophoretic particle, according to an embodiment of the present invention, comprises: a particle; DNA molecules bonded to a surface of the particle; and a hydrophobic membrane covering the surface of the DNA molecule. The electrophoretic particle according to the present invention can fix the DNA molecules by including a plurality of phosphate ions with a negative ion on the surface of the particle. In addition, the hydrophobic membrane covering the surface of the DNA molecule can be provided.

    Abstract translation: 根据本发明的一个实施方案的电泳颗粒包含:颗粒; 结合到颗粒表面的DNA分子; 和覆盖DNA分子表面的疏水膜。 根据本发明的电泳颗粒可以通过在颗粒表面上包含多个具有负离子的磷酸根离子来固定DNA分子。 此外,可以提供覆盖DNA分子表面的疏水膜。

    거울 전환이 가능한 디스플레이 소자
    32.
    发明公开
    거울 전환이 가능한 디스플레이 소자 有权
    可以作为镜子转换的显示设备

    公开(公告)号:KR1020140020443A

    公开(公告)日:2014-02-19

    申请号:KR1020120086799

    申请日:2012-08-08

    Abstract: A display device according to the present invention may comprise a display part on a substrate and an electrochromic part on the display part. The display part may comprise a transparent display such as an organic light emitting diode or an electronic paper. An electrochromic layer may be discoloured so that the electrochromic part acts as a black backplane in a display mode. To realize complete black color, the electrochromic part may comprise a first electrochromic layer and a second electrochromic layer which absorb light of wavelengths different from each other. To realize complete black color, an optical filter layer may be included between the display part and the electrochromic part. The electrochromic layer is transformed to a transparent state in a mirror mode so that a metal electrode of the electrochromic part can act as a mirror. The display device according to the present invention may be transformed to the display mode and the mirror mode.

    Abstract translation: 根据本发明的显示装置可以包括在基板上的显示部分和显示部分上的电致变色部分。 显示部分可以包括诸如有机发光二极管或电子纸的透明显示器。 电致变色层可能变色,使得电致变色部分在显示模式下用作黑色背板。 为了实现完全的黑色,电致变色部分可以包括吸收彼此不同的波长的光的第一电致变色层和第二电致变色层。 为了实现完全黑色,可以在显示部分和电致变色部分之间包括光学滤光层。 电致变色层以镜面模式转变为透明状态,使得电致变色部分的金属电极可以用作反射镜。 根据本发明的显示装置可以变换为显示模式和镜像模式。

    생체물질의 정량적 검출방법
    34.
    发明公开
    생체물질의 정량적 검출방법 无效
    用于定量检测生物分子的方法

    公开(公告)号:KR1020120115813A

    公开(公告)日:2012-10-19

    申请号:KR1020110033357

    申请日:2011-04-11

    Abstract: PURPOSE: A quantitative detection method of biomass is provided to concurrently and effectively detect multifariousness or multiple target biomasses. CONSTITUTION: A quantitative detection method of biomass comprises the following steps: fixing a first captor, which specifically unites with biomass for analyzing, on a plastic substrate of well type; uniting the first captor with the biomass by applying samples which include the biomass for analyzing; noting the biomass with nano-particles combined with a second captor; growing the nano-particles by applying a solution including metal ion on a plastic substrate; and measuring the amount of transmitted light by irradiating light on the plastic substrate. The first and second captors are respectively antigen, antibody, DNA, RNA, PPNA, hapten, aptamer, avidin, biotin, ligand, amino acid, bromatotoxin or hormone.

    Abstract translation: 目的:提供生物质的定量检测方法,以同时有效地检测多种或多种目标生物量。 构成:生物质的定量检测方法包括以下步骤:将第一个捕获器与生物质联合起来进行分析,将其固定在井型塑料基材上; 通过应用包括用于分析的生物质的样品将第一捕获器与生物质结合在一起; 注意纳米颗粒与第二捕获器结合的生物质; 通过在塑料基材上施加包含金属离子的溶液来生长纳米颗粒; 并通过在塑料基板上照射光来测量透射光的量。 第一和第二捕获物分别是抗原,抗体,DNA,RNA,PPNA,半抗原,适体,抗生物素蛋白,生物素,配体,氨基酸,溴毒素或激素。

    클리세 및 그의 제조방법
    35.
    发明公开
    클리세 및 그의 제조방법 无效
    说明和制造方法相同

    公开(公告)号:KR1020120055754A

    公开(公告)日:2012-06-01

    申请号:KR1020100116324

    申请日:2010-11-22

    CPC classification number: B41N1/06 G03F7/40

    Abstract: PURPOSE: A cliche and a manufacturing device for the same are provided to form an ink absorption layer on a substrate exposed from photo resist patterns and the ink absorption layer and photo-resist patterns have a minute line width and a high step difference. CONSTITUTION: A cliche and a manufacturing device for the same are as follows. A substrate(10) is provided. Organic patterns are formed on the substrate. An ink absorption layer(30) is formed on the substrate which is exposed to the organic patterns or on the organic patterns. The organic patterns comprise a negative photo resist. The ink absorption layer comprises one or more metal layers.

    Abstract translation: 目的:提供一种陈列纸及其制造装置,以在从抗蚀剂图案曝光的基板上形成墨吸收层,并且墨吸收层和光致抗蚀剂图案具有微小的线宽和高的台阶差。 规定:相同的陈词滥调和制造装置如下。 提供基板(10)。 在基板上形成有机图案。 在暴露于有机图案或有机图案的基板上形成墨吸收层(30)。 有机图案包括负光致抗蚀剂。 油墨吸收层包括一个或多个金属层。

    검출 장치
    36.
    发明授权
    검출 장치 有权
    检测装置

    公开(公告)号:KR101111669B1

    公开(公告)日:2012-02-14

    申请号:KR1020080130969

    申请日:2008-12-22

    Abstract: 본 발명은 검출 장치에 관한 것이다. 본 발명의 검출 장치는 검출 물질과 반응하여 저항 변화를 발생하는 저항성 반응부, 상기 저항 변화에 따라 비선형적 특성을 갖는 전류 신호를 생성하는 검출 신호 생성부, 및 상기 전류 신호를 검출하는 신호 검출부를 포함하고, 상기 저항성 반응부와 상기 검출 신호 생성부는 병렬 연결된다.
    검출 장치, 저항, 기준 저항, 다이오드, 비선형, 고감도

    비변형 고체표면을 선택적으로 광응답형 코팅막으로 개질하는 방법 및 광응답형 코팅막을 이용한 활성물질 고정화 방법
    37.
    发明公开
    비변형 고체표면을 선택적으로 광응답형 코팅막으로 개질하는 방법 및 광응답형 코팅막을 이용한 활성물질 고정화 방법 失效
    用于功能化选择性非改性固体表面的方法和用于在活性固体表面上固定活性材料的方法

    公开(公告)号:KR1020110069348A

    公开(公告)日:2011-06-23

    申请号:KR1020090126051

    申请日:2009-12-17

    Abstract: PURPOSE: A method of selectively reforming a non-deformation solid surface into an optical response type coating film, and an active material fixing method using the optical response type coating film are provided to selectively combining an active material in the desired part. CONSTITUTION: A method of selectively reforming a non-deformation solid surface into an optical response type coating film comprises the following steps: reforming the non-deformation solid surface without an oxidation process or a nitration process using hydrogen; forming an EGPA coating film on the non-deformation solid surface using light; removing an amine protector or amine slat from the EGPA coating film; forming a coating layer with a functional group reacting to the light on the non-deformation solid surface using the EGPA coating film; and dipping a substrate including the non-deformation solid surface into a buffered oxide etching solution for 10seconds.

    Abstract translation: 目的:将非变形固体表面选择性地重整成光响应型涂膜的方法和使用该光响应型涂膜的活性物质定影方法,以选择性地组合所需部分中的活性物质。 构成:将非变形固体表面选择性地重整成光学响应型涂膜的方法包括以下步骤:在不进行氧化处理或使用氢气的硝化工艺下重整非变形固体表面; 使用光在非变形固体表面上形成EGPA涂膜; 从EGPA涂膜中除去胺保护剂或胺板条; 使用EGPA涂膜在非变形固体表面上形成具有与光反应的官能团的涂层; 并将包含非变形固体表面的衬底浸入缓冲氧化物蚀刻溶液中10秒钟。

    바이오 센서 및 이를 이용한 바이오 분자 검출 방법
    38.
    发明公开
    바이오 센서 및 이를 이용한 바이오 분자 검출 방법 有权
    生物传感器和使用生物传感器检测低分子量生物分子和非充电生物分子的方法

    公开(公告)号:KR1020100065032A

    公开(公告)日:2010-06-15

    申请号:KR1020090027383

    申请日:2009-03-31

    Abstract: PURPOSE: A bio sensor and a method for detecting bio molecules are provided to electrochemically detect a target molecules having small molecular weight. CONSTITUTION: A bio sensor for detecting a target molecule comprises: a sensing unit on which target molecules for detecting on the surface; and a fluid channel for supplying analysis solution containing the probe molecules to a target molecules. The probe molecules specifically bind to target molecules. The probe molecules have larger charge than the target molecules.

    Abstract translation: 目的:提供生物传感器和检测生物分子的方法,以电化学检测分子量小的靶分子。 构成:用于检测靶分子的生物传感器包括:感测单元,其上用于在表面上检测的目标分子; 以及用于将含有探针分子的分析溶液供应给靶分子的流体通道。 探针分子特异性结合靶分子。 探针分子具有比靶分子更大的电荷。

    활성 물질을 기판 표면 상에 고정하는 방법
    39.
    发明公开
    활성 물질을 기판 표면 상에 고정하는 방법 无效
    在基材表面上固定活性材料的方法

    公开(公告)号:KR1020100052631A

    公开(公告)日:2010-05-20

    申请号:KR1020080111433

    申请日:2008-11-11

    CPC classification number: G01N33/54353 C12Q1/6834 G01N33/551 B82Y5/00

    Abstract: PURPOSE: A method for fixing an active material on the substrate surface is provided to reproductively form monomolecular film of uniform silane comound in high density. CONSTITUTION: A method for fixing an active material on the substrate surface comprises: a step of cleaning the substrate; a step of modifying the surface with hydroxyl group; a step of modifying the surface using steam of organic silane compound; a step of fixing the active material on the surface end; a step of immersing the substrate in acetone; a step of immersing substrate in methanol; a step of immersing the substrate in mixture solution of sulfuric acid and hydrogen peroxide; and a step of immersing the substrate in mixture of hydrofluoric acid and ammonium fluoride.

    Abstract translation: 目的:提供一种将活性材料固定在基材表面上的方法,以高密度再生形成均匀硅烷化合物的单分子膜。 构成:将活性物质固定在基材表面上的方法包括:清洗基材的步骤; 用羟基改性表面的步骤; 使用有机硅烷化合物的蒸汽改性表面的步骤; 将活性物质固定在表面端上的步骤; 将基材浸入丙酮中的步骤; 将底物浸入甲醇中的步骤; 将基板浸入硫酸和过氧化氢的混合溶液中的步骤; 以及将基板浸入氢氟酸和氟化铵的混合物中的步骤。

    FET를 이용한 등전점 측정 방법 및 측정 장치
    40.
    发明公开
    FET를 이용한 등전점 측정 방법 및 측정 장치 有权
    使用FET和测量装置测量电压点的方法

    公开(公告)号:KR1020100019059A

    公开(公告)日:2010-02-18

    申请号:KR1020080077893

    申请日:2008-08-08

    CPC classification number: G01N27/4145

    Abstract: PURPOSE: A method for measuring isoelectric point using FET and a measurement apparatus using the same are provided to measure the isoelectric point of material by calculating current variance difference on a current measurement part even without controlling the acidity of electrolyte solution. CONSTITUTION: A method for measuring isoelectric point comprises following steps. FET is provided. The electrolyte solution of the first concentration is provided to a channel region of FET and first current value flowing in the channel region between the drain electrode and source is measured(S20). The electrolyte solution of the second concentration which is higher than the first concentration is supplied and second current value flowing in the channel region between the drain electrode and the source is measured(S30). The FET or the isoelectric point of material on the FET is decided by using the difference between the first and the second current value(S70).

    Abstract translation: 目的:使用FET测量等电点的方法和使用该方法的测量装置,通过计算电流测量部分上的电流方差差来测量材料的等电点,即使不控制电解质溶液的酸度。 构成:测量等电点的方法包括以下步骤。 提供FET。 将第一浓度的电解液提供给FET的沟道区域,并测量在漏极和源极之间的沟道区域中流动的第一电流值(S20)。 提供高于第一浓度的第二浓度的电解液,并测量在漏极和源极之间的沟道区域中流动的第二电流值(S30)。 通过使用第一和第二电流值之间的差来确定FET上的FET或等离子体电位点(S70)。

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