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    • 44. 发明授权
    • Microfluidic sensor complex structure
    • 微流体传感器复杂结构
    • US08337683B2
    • 2012-12-25
    • US12670817
    • 2008-07-24
    • Moon Hee ChoiSeung Hyeun JungYoung Hoon KimJoo-Heon ParkHakhyun NamGeun Sig Cha
    • Moon Hee ChoiSeung Hyeun JungYoung Hoon KimJoo-Heon ParkHakhyun NamGeun Sig Cha
    • B67D1/00
    • B01L3/502707B01L3/5027B01L2200/0621B01L2200/143B01L2300/0645B01L2300/0681B01L2300/0816B01L2300/0867B01L2300/0887B01L2400/0406
    • Disclosed is a microfluidic sensor complex structure comprising a lower plate, a middle plate and an upper plate. A reference electrode, a working electrode and an electrode connection are formed on the lower plate. The middle plate comprises a microfluidic channel passage therein. The upper plate is overlaid on the middle plate so as to induce a capillary phenomenon on the microfluidic channel passage formed on in the middle plate. The microfluidic sensor complex structure allows the motion of a sample to be driven only by a capillary phenomenon, without additional operation, and allows an immune response, washing, and electrochemical analysis in one round once a sample is introduced thereinto. Hence, it requires only a short time period for measurement, is convenient to handle, and shows sensitivity and selectivity. Also, it can be produced on a mass scale because it can be formed of typical organic polymers using a simple method. Based on analytical electrochemistry, the microfluidic sensor complex structure can be used as a small-size sensor that can be applied to practice sites.
    • 公开了一种微流体传感器复合结构,其包括下板,中板和上板。 在下板上形成参考电极,工作电极和电极连接。 中间板包括其中的微流体通道通道。 上板覆盖在中间板上,以便在形成在中间板上的微流体通道通道上引起毛细管现象。 微流体传感器复合结构允许样品的运动仅由毛细管现象驱动,而无需额外的操作,并且一旦将样品引入其中就可以在一轮中进行免疫应答,洗涤和电化学分析。 因此,只需要很短的时间进行测量,便于处理,显示灵敏度和选择性。 此外,它可以以大规模生产,因为它可以使用简单的方法由典型的有机聚合物形成。 基于分析电化学,微流体传感器复合结构可用作可应用于实践场所的小尺寸传感器。
    • 49. 发明申请
    • MICROFLUIDIC SENSOR COMPLEX STRUCTURE
    • 微流体传感器复合结构
    • US20100200428A1
    • 2010-08-12
    • US12670817
    • 2008-07-24
    • Moon Hee ChoiSeung Hyeun JungYoung Hoon KimJoo-Heon ParkHakhyun NamGeun Sig Cha
    • Moon Hee ChoiSeung Hyeun JungYoung Hoon KimJoo-Heon ParkHakhyun NamGeun Sig Cha
    • G01N27/26
    • B01L3/502707B01L3/5027B01L2200/0621B01L2200/143B01L2300/0645B01L2300/0681B01L2300/0816B01L2300/0867B01L2300/0887B01L2400/0406
    • Disclosed is a microfluidic sensor complex structure comprising a lower plate, a middle plate and an upper plate. A reference electrode, a working electrode and an electrode connection are formed on the lower plate. The middle plate comprises a microfluidic channel passage therein. The upper plate is overlaid on the middle plate so as to induce a capillary phenomenon on the microfluidic channel passage formed on in the middle plate. The microfluidic sensor complex structure allows the motion of a sample to be driven only by a capillary phenomenon, without additional operation, and allows an immune response, washing, and electrochemical analysis in one round once a sample is introduced thereinto. Hence, it requires only a short time period for measurement, is convenient to handle, and shows sensitivity and selectivity. Also, it can be produced on a mass scale because it can be formed of typical organic polymers using a simple method. Based on analytical electrochemistry, the microfluidic sensor complex structure can be used as a small-size sensor that can be applied to practice sites.
    • 公开了一种微流体传感器复合结构,其包括下板,中板和上板。 在下板上形成参考电极,工作电极和电极连接。 中间板包括其中的微流体通道通道。 上板覆盖在中间板上,以便在形成在中间板上的微流体通道通道上引起毛细管现象。 微流体传感器复合结构允许样品的运动仅由毛细管现象驱动,而无需额外的操作,并且一旦将样品引入其中就可以在一轮中进行免疫应答,洗涤和电化学分析。 因此,只需要很短的时间进行测量,便于处理,显示灵敏度和选择性。 此外,它可以以大规模生产,因为它可以使用简单的方法由典型的有机聚合物形成。 基于分析电化学,微流体传感器复合结构可用作可应用于实践场所的小尺寸传感器。