FET를 이용한 등전점 측정 방법 및 측정 장치
    51.
    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)。

    나노입자를 이용한 바이오 센서 및 그 제조 방법
    52.
    发明公开
    나노입자를 이용한 바이오 센서 및 그 제조 방법 无效
    生物传感器及其制造方法

    公开(公告)号:KR1020090060635A

    公开(公告)日:2009-06-15

    申请号:KR1020070127521

    申请日:2007-12-10

    Abstract: A bio sensor which detects bio material through interaction between target molecule and probe molecule is provided to minimize the sensitivity to the difference of pH concentration and salt concentration and improve detection accuracy. A bio sensor comprises: a photo diode which contains a P-type doping layer(440), N-type doping layer(450) and non-doping area; an electrode which is formed at the both ends of P-type doping layer and N-type doping layer; and a probe molecule(P) which is fixed at the upper side of non-doping area. A method for manufacturing the bio sensor comprises: a step of forming photo diode containing the P-type doping layer, N-type doping layer and non-doping area; a step of forming electrode at the both ends of the P-type doping layer and N-type doping layer; a step of fixing the probe molecule at the upper side of the non-doping area; and a step of injecting target molecule into a sample.

    Abstract translation: 提供通过靶分子和探针分子之间的相互作用检测生物材料的生物传感器,以最小化对pH浓度和盐浓度的差异的敏感性,并提高检测精度。 生物传感器包括:光电二极管,其包含P型掺杂层(440),N型掺杂层(450)和非掺杂区域; 在P型掺杂层和N型掺杂层的两端形成的电极; 以及固定在非掺杂区域的上侧的探针分子(P)。 一种用于制造生物传感器的方法,包括:形成含有P型掺杂层,N型掺杂层和非掺杂区的光电二极管的步骤; 在P型掺杂层和N型掺杂层的两端形成电极的步骤; 将探针分子固定在非掺杂区域的上侧的步骤; 以及将靶分子注入样品的步骤。

    바이오 센서, 그 제조방법 및 이를 구비한 바이오 감지장치
    53.
    发明授权
    바이오 센서, 그 제조방법 및 이를 구비한 바이오 감지장치 有权
    生物传感器,其制造方法及其生物感测装置

    公开(公告)号:KR100758285B1

    公开(公告)日:2007-09-12

    申请号:KR1020060094397

    申请日:2006-09-27

    Abstract: A bio sensor is provided to improve sensitivity of bio materials by adsorbing them with all four surfaces of a sensing part, and simultaneously detect various kinds of bio materials through flow of fluid containing various bio materials. A bio sensor(100) comprises a supporting part(110) having a fluid pathway(115A), and a sensing part(113) crossing over the fluid pathway and having reactant capable of reacting with bio materials injected through the fluid pathway on the surface, wherein the supporting part contains a substrate(111), an etching barrier layer(114) in the rear side of the substrate, and an insulating layer(112) in the upper side of the substrate; the sensing part has a dumbbell shape with a center part(113A) having smaller width and left and right parts(113B) having larger width which transfer the detected signal from the center part to electrodes(116) formed in both left and right part.

    Abstract translation: 提供生物传感器,以通过将感光部件的所有四个表面吸附来提高生物材料的灵敏度,并通过含有各种生物材料的流体的流动同时检测各种生物材料。 生物传感器(100)包括具有流体通道(115A)的支撑部分(110)和与流体通道交叉的感测部分(113),并具有能够通过表面上的流体通道注入的生物材料反应的反应物 ,其中所述支撑部分包含衬底(111),在所述衬底的后侧中的蚀刻阻挡层(114)以及在所述衬底的上侧中的绝缘层(112); 感测部具有哑铃形状,具有宽度较小的中心部分(113A),宽度大的左右部分(113B)将检测信号从中心部分转移到左右两部分形成的电极(116)。

    유기 반도체 소자 및 그 제작 방법
    54.
    发明公开
    유기 반도체 소자 및 그 제작 방법 失效
    有机半导体器件及其制造方法

    公开(公告)号:KR1020070058937A

    公开(公告)日:2007-06-11

    申请号:KR1020060035654

    申请日:2006-04-20

    CPC classification number: H01L51/0512 B82Y10/00

    Abstract: An organic semiconductor device is provided to vary a distance between nano particles by using a charge storage medium as a nano particle with a uniform size distribution. An organic semiconductor layer includes a first electrode(210), an electron channel layer(230) formed on the first electrode and a second electrode(250) formed on the electron channel layer. The electron channel layer is composed of a lower organic material layer(231) formed on the first electrode, a nano particle layer(233), and an upper organic material layer(235) formed on the nano particle layer. The nano particle layer is formed on the lower organic material layer, nano particles having a predetermined size such that the nano particles are separated from each other by a predetermined interval. The electron channel layer can maintain a high conductive state and a low conductive state when a voltage is not applied from the outside.

    Abstract translation: 提供有机半导体器件以通过使用具有均匀尺寸分布的电荷存储介质作为纳米颗粒来改变纳米颗粒之间的距离。 有机半导体层包括第一电极(210),形成在第一电极上的电子通道层(230)和形成在电子通道层上的第二电极(250)。 电子通道层由在第一电极上形成的下部有机材料层(231),纳米颗粒层(233)和形成在纳米颗粒层上的上部有机材料层(235)组成。 纳米颗粒层形成在下部有机材料层上,具有预定尺寸的纳米颗粒,使得纳米颗粒彼此间隔预定间隔。 当不从外部施加电压时,电子通道层可以保持高导电状态和低导电状态。

    전기 변색 소자 및 그 제조방법

    公开(公告)号:KR102215307B1

    公开(公告)日:2021-02-16

    申请号:KR1020150013420

    申请日:2015-01-28

    Abstract: 본발명에따른전기변색소자는제1 전극상에서, 제1 포어를갖는제1 나노구조체및 상기제1 나노구조체상에제공된제1 전기변색분자들을포함하는제1 전기변색층,; 상기제1 전기변색층의상면상에배치되고, 상기제1 전기변색층의제1 함몰부로연장되는전해질; 및상기전해질상에배치되는제2 나노구조체를포함할수 있다. 상기제1 나노구조체는그 상면상에제1 함몰부를가질수 있다. 상기제2 나노구조체는그 내부에제2 포어및 그하면상에제2 함몰부를가질수 있다.

    투명 디스플레이 장치
    59.
    发明公开
    투명 디스플레이 장치 审中-实审
    透明的显示设备

    公开(公告)号:KR1020170091196A

    公开(公告)日:2017-08-09

    申请号:KR1020160011122

    申请日:2016-01-29

    Abstract: 투명디스플레이장치는셔터영역및 발광영역이수평으로배치되는하부패널과, 셔터영역및 발광영역을커버하며하부패널에마주하는리세스영역을포함하는상부패널과, 발광소자및 셔터소자를포함하되, 셔터소자는, 하부패널의셔터영역에순차적으로적층되는하부전극및 전기변색물질층과, 상부패널의리세스영역내에배치되는상부전극과, 전기변색물질층및 상기상부전극사이를충진하는전해질층을포함한다.

    Abstract translation: 但透明显示器设备包括顶部面板,发光器件和包括覆盖所述底部面板和快门区域和发光区域,快门区域和发光区域布置在水平和相对的下面板的凹进区域中的快门装置, 快门装置,在下部电极和电致变色材料层被顺序地堆叠在下部面板上的快门区域和上部电极,电致变色材料层和填充设置在上板法处理区域中的上部电极之间的电解质层 它包括。

    전기 변색 소자 및 그 구동방법
    60.
    发明公开
    전기 변색 소자 및 그 구동방법 审中-实审
    电致发光器件及其驱动方法

    公开(公告)号:KR1020150076778A

    公开(公告)日:2015-07-07

    申请号:KR1020130165351

    申请日:2013-12-27

    Abstract: 본발명에따른전기변색소자는하부전극상에배치되며, 하부금속산화물입자들및 상기각각의금속산화물입자들상에제공된하부전기변색입자들을포함하는하부전기변색층; 및전해질상에제공되며, 상부금속산화물입자들및 상기각각의금속산화물입자들상에제공된상부전기변색입자들을포함하는상부전기변색층을포함할수 있다. 금속산화물입자들은제1 하부금속산화물입자들및 제2 하부금속산화물입자들을포함할수 있다. 상부금속산화물입자들은제1 상부금속산화물입자들및 제2 상부금속산화물입자들을포함할수 있다.

    Abstract translation: 根据本发明,电致变色装置包括:在每个下部金属氧化物颗粒上提供包含下部金属氧化物颗粒和下部电致变色颗粒的下部电致变色层; 以及设置在电解质上的上部电致变色层,并且包括上部金属氧化物颗粒和设置在每个下部金属氧化物颗粒上的上部电致变色颗粒。 金属氧化物颗粒可以包括第一下部金属氧化物颗粒和第二较低金属氧化物颗粒。 上部金属氧化物颗粒可以包括第一上部金属氧化物颗粒和第二上部金属氧化物颗粒。

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