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    • 1. 发明公开
    • 열안정성 투명 도전막 및 투명 도전막의 제조방법
    • 热稳定性透明导电薄膜和制备热稳定性透明导电薄膜的方法
    • KR1020110054863A
    • 2011-05-25
    • KR1020090111657
    • 2009-11-18
    • 한국전자통신연구원주식회사 나노신소재
    • 정승묵정우석유민기황치선조경익김상희박장우
    • H01B1/22H01B1/02H01L21/203
    • PURPOSE: A transparent conductive film is provided to ensure stable specific resistivity and thermal stability by comprising titanium in indium tin oxide and tin oxide. CONSTITUTION: A transparent conductive film with excellent thermal stability comprises a mixture in which titanium is mixed with indium tin oxide and tin oxide. A method for preparing the transparent conductive film comprises the steps of: (S11) preparing raw material powders including an induim oxide powder or rare earth metal indium powder, tin oxide powder or metal tin powder, and titanium oxide powder or metal titanium powder as a main component; (S12) forming a transparent conductive film from the raw material powders using a sputtering apparatus; and (S13) heat-treating the formed transparent conductive film at a temperature of 300 °C or less.
    • 目的:提供透明导电膜以通过在氧化铟锡和氧化锡中包含钛来确保稳定的电阻率和热稳定性。 构成:具有优异的热稳定性的透明导电膜包括其中钛与氧化铟锡和氧化锡混合的混合物。 制备透明导电膜的方法包括以下步骤:(S11)制备包含氧化铟粉末或稀土金属铟粉末,氧化锡粉末或金属锡粉末以及氧化钛粉末或金属钛粉末的原料粉末 主要成分; (S12)使用溅射装置从所述原料粉末形成透明导电膜; 和(S13)在300℃以下的温度对所形成的透明导电膜进行热处理。
    • 2. 发明公开
    • 랩온어칩 및 그 구동 방법
    • LAB-ON-A-CHIP及其驱动方法
    • KR1020090039130A
    • 2009-04-22
    • KR1020070104589
    • 2007-10-17
    • 한국전자통신연구원
    • 정문연신동호정민숙김상희김혜윤박선희
    • G01N33/49G01N33/48G01N33/00G01N35/00
    • G01N33/49
    • A capillary force Lab-On-A-Chip is provided to control flow of microfluid by freely changing the capillary force of Lab-On-A-Chip and improve the function of controlling reaction time between a fluid sample to analyze and reagent. A capillary force Lab-On-A-Chip comprises: the first area in which the first substrate(110) and the second substrate(120) are bonded together; the second area in which the first substrate and the second substrate are not bonded; gap control member, which is equipped at the end of the second area which faces against the boundary between the first area and second area, controlling a capillary force by controlling the gap between the first substrate and the second substrate. A method for driving the Lab-On-A-Chip comprises: a step of preparing Lab-On-A-Chip containing the first area and the second area and a step of controlling flow of fluid inside the second area by controlling the gap between the first substrate and the second substrate of the end of the second area corresponding to the boundary of the first area and the second area.
    • 提供毛细管力实验芯片,通过自由地改变实验芯片上的毛细管力来控制微流体的流动,提高控制流体样品分析和试剂之间的反应时间的功能。 毛细管力实验芯片A芯片包括:第一衬底(110)和第二衬底(120)结合在一起的第一区域; 第一基板和第二基板未接合的第二区域; 间隙控制构件,其设置在面对第一区域和第二区域之间的边界的第二区域的端部,通过控制第一基板和第二基板之间的间隙来控制毛细管力。 一种用于驱动实验片上A芯片的方法包括:制备包含第一区域和第二区域的实验室芯片的步骤,以及通过控制第二区域内的间隙来控制第二区域内的流体流动的步骤 第二区域的端部的第一基板和第二基板对应于第一区域和第二区域的边界。
    • 3. 发明公开
    • 미세 유체 칩
    • 微流控芯片
    • KR1020110071751A
    • 2011-06-29
    • KR1020090128397
    • 2009-12-21
    • 한국전자통신연구원
    • 김상희
    • G01N33/53G01N35/00
    • PURPOSE: A microfluidic chip is provided to induce active mobility of antibody and antigen with enough time. CONSTITUTION: A microfluidic chip comprises: an inlet(110) for inflow of a sample; a nanoparticle adhesion region having an antibody which is conjugated with nanoparticles; a time delay region for providing enough time for binding between the antigen and the antibody by reducing flow rate of the sample; a reaction unit(120) having a contact angle control region for enhancing flow speed of the sample; and an outlet(130) for outflow of the sample. The nanoparticle is formed of poly styrene.
    • 目的:提供微流控芯片,以足够的时间诱导抗体和抗原的活性迁移。 构成:微流体芯片包括:用于流入样品的入口(110); 具有与纳米颗粒结合的抗体的纳米颗粒粘附区域; 时间延迟区,用于通过降低样品的流速来提供足够的时间来结合抗原和抗体; 反应单元(120),具有用于提高样品流速的接触角控制区域; 和用于样品流出的出口(130)。 纳米颗粒由聚苯乙烯形成。
    • 5. 发明公开
    • 자동 진단 시스템
    • 自动诊断系统
    • KR1020090039127A
    • 2009-04-22
    • KR1020070104585
    • 2007-10-17
    • 한국전자통신연구원
    • 정문연신동호김용준정민숙김상희박선희
    • C12Q1/68
    • B01L7/52G01N35/026
    • An automatic diagnosis system is provided to perform chemical analysis not depending on experimenter by using microrobot, prevent mistake by experimenter, shorten analyzing time. An automatic diagnosis system(100) comprises a pre-treatment part(120), a polymerase chain reaction chamber(130), and a hybridization chamber(140) equipped in a substrate, a microrobot(150) connected to the substrate, and a control part(160) for controlling the pre-treatment part and the microrobot. And the automatic diagnosis system additionally comprises light source providing upper side and lower side of the substrate in the area in which the hybridization chamber is equipped, and image pick-up device.
    • 提供自动诊断系统,通过使用微型机器进行化学分析,不依赖于实验者,防止实验者错误,缩短分析时间。 自动诊断系统(100)包括预处理部分(120),聚合酶链式反应室(130)和装在基板中的杂交室(140),连接到基板的微型机器人(150)和 用于控制预处理部分和微型机器人的控制部分(160)。 并且,自动诊断系统还包括在设置有杂交室的区域中提供衬底的上侧和下侧的光源和图像拾取装置。
    • 8. 发明公开
    • 휴대용 소형 동물 세포 배양기 및 그 제조 방법
    • 微量级动物细胞培养物及其生产方法
    • KR1020090059448A
    • 2009-06-11
    • KR1020070126314
    • 2007-12-06
    • 한국전자통신연구원
    • 최요한정광효이대식김상희정민숙전치훈정문연박선희
    • C12M3/00C12M1/00
    • C12M23/20B01L3/5027B01L7/00C12M23/16C12M41/12Y10T29/49124
    • A portable small cell incubator is provided to supply gas which is necessary in culturing animal cell and regulate the temperature of culture medium. A portable small cell incubator contains an upper plate(100), lower plate(300) and middle thin film(200). The upper plate contains a minute heat wire(110) and medium storage space(130) by PDMS(polydimethylsiloxane). The lower plate contains a storage space(330) of liquid and solid and gas movement channel. A method for manufacturing the incubator comprises: a step of depositing a metal on the lower plate; a step of forming minute heat wire; a step of attaching a PDMS(polydimethylsiloxane) film on the upper side of lower plate; a step of attaching PDMS thin film having gas permeability on the upper side of gas movement channel; and a step of attaching the upper plate.
    • 提供便携式小细胞培养器来提供培养动物细胞所必需的气体并调节培养基的温度。 便携式小电池培养箱包含上板(100),下板(300)和中间薄膜(200)。 上板由PDMS(聚二甲基硅氧烷)包含微小的热丝(110)和介质储存空间(130)。 下板包含液体和固体和气体运动通道的储存空间(330)。 一种用于制造所述培养箱的方法,包括:在所述下板上沉积金属的步骤; 形成分热丝的步骤; 在下板的上侧附着PDMS(聚二甲基硅氧烷)膜的步骤; 在气体流动通道的上侧附着具有透气性的PDMS薄膜的步骤; 以及附接上板的步骤。
    • 9. 发明授权
    • 모세관력을 이용한 개방형 혈장 분리 필터 소자
    • 具有开放式过滤器的毛细流动等离子体过滤装置
    • KR100889727B1
    • 2009-03-24
    • KR1020070119701
    • 2007-11-22
    • 한국전자통신연구원
    • 정광효전주현김상희이대식정문연박선희
    • G01N33/49G01N33/487
    • An open type blood plasma separating filter unit is provided to separate a blood plasma from blood by using capillary force without help of any external devices such as a syringe pump. An open type blood plasma separating filter unit comprises a bottom substrate(100), a top substrate(200), and a filter member(300). The bottom substrate includes one or more blood plasma guiding channel(130), a blood plasma chamber, and one or more air outlet. The blood plasma guiding channel has a narrow and long capillary shape. The blood plasma chamber is linked with the blood plasma guiding channel. The filter member is closely adhered to a top of the blood plasma guiding channel to separate the blood plasmas and blood cells from the blood.
    • 提供一种开式血浆分离过滤器单元,用于通过使用毛细管力将血浆与血液分离,而无需任何外部装置如注射泵。 开放型血浆分离过滤器单元包括底部基底(100),顶部基底(200)和过滤元件(300)。 底部基底包括一个或多个血浆引导通道(130),血浆室和一个或多个空气出口。 血浆引导通道具有窄而长的毛细管形状。 血浆室与血浆引导通道连接。 过滤构件紧密地附着在血浆引导通道的顶部,以将血浆和血液细胞与血液分离。