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    • 1. 发明授权
    • Microcolumn-microcolumn flow interface and method
    • 微柱 - 微柱流动界面和方法
    • US5593564A
    • 1997-01-14
    • US506233
    • 1995-07-24
    • Catherine K. TemplinDouglass McManigill
    • Catherine K. TemplinDouglass McManigill
    • G01N27/447C25B7/00G01N27/26
    • G01N27/44743G01N27/44717
    • A flow gating interface system including a first microcolumnar section, a second microcolumnar section, and a channel for interfacing a first fluid conduit and a second fluid conduit is provided. The channel, having an inwardly facing wall, encloses at least a portion each of the first microcolumnar section and the second microcolumnar section for conducting a flush fluid flow past the outlet end of the first microcolumnar section and the inlet end of the second microcolumnar section. The inwardly facing wall of the channel nonfixedly constrains and aligns the end portions of the first and second microcolumnar sections. The outlet end of the first fluid conduit is connected to and in fluid communication with the first microcolumnar section of the flow gating interface. The inlet end of the second fluid conduit is connected to and in fluid communication with the second microcolumnar section of the flow gating interface.
    • 提供了一种流动浇口界面系统,其包括第一微柱段,第二微柱段和用于与第一流体导管和第二流体导管连接的通道。 具有向内的壁的通道包围第一微柱段和第二微柱段中的每一个的至少一部分,用于使冲洗流体流经第一微柱段的出口端和第二微柱段的入口端。 通道的面向内的壁不固定地约束和对准第一和第二微柱段的端部。 第一流体导管的出口端与流动浇口界面的第一微柱部分连接并流体连通。 第二流体管道的入口端连接到流动浇口界面的第二微柱段并与其流体连通。
    • 2. 发明授权
    • Microcolumnar analytical apparatus with microcolumnar flow gating
interface and method of using the apparatus
    • 具有微柱流动门控界面的微柱分析装置及其使用方法
    • US5646048A
    • 1997-07-08
    • US505941
    • 1995-07-24
    • Catherine Keely TemplinDouglass McManigill
    • Catherine Keely TemplinDouglass McManigill
    • G01N27/447G01N30/02G01N30/46G01N30/60G01N1/10B01D15/08
    • G01N30/461G01N27/44743G01N27/44773G01N30/6039G01N30/6095G01N30/6047Y10S285/911Y10T436/2575
    • A microcolumnar analytical apparatus having a flow gating interface system for interfacing a first microcolumn and a second microcolumn is provided. The apparatus includes a flow gating interface, a first fluid conduit (e.g. a liquid chromatograph microcolumn) of a fluid sample, a flush liquid supplier, and a second fluid conduit (e.g. a capillary electrophoresis microcolumn) for analysis of the effluent fluid sample from the first fluid conduit. The flow gating interface includes a first microcolumnar section, a second microcolumnar section, and a channel. The channel, having an inwardly facing wall, encloses at least a portion each of the first microcolumnar section and the second microcolumnar section for conducting a flush fluid flow past the outlet end of the first microcolumnar section and the inlet end of the second microcolumnar section. The inwardly facing wall of the channel nonfixedly constrains and aligns said end portions of the first and second microcolumnar section due to the relative curvature and elasticity of the microcolumnar sections and the channel. The first fluid conduct is connected to and in fluid communication with the first microcolumnar section of the flow gating interface. The second fluid conducting means has a microcolumn. This microcolumn is connected to and in fluid communication with the second microcolumnar section of the flow gating interface. The flush liquid supplier is connected to and in fluid communication with the channel.
    • 提供了具有用于连接第一微柱和第二微柱的流动浇口界面系统的微柱分析装置。 该装置包括流动门控接口,流体样品的第一流体导管(例如液相色谱微柱),冲洗液体供应器和用于分析流出液流体样品的第二流体导管(例如毛细管电泳微柱) 第一流体导管。 流动浇口界面包括第一微柱段,第二微柱段和通道。 具有向内的壁的通道包围第一微柱段和第二微柱段中的每一个的至少一部分,用于使冲洗流体流经第一微柱段的出口端和第二微柱段的入口端。 由于微柱段和通道的相对曲率和弹性,通道的面向内的壁不固定地约束和对准第一和第二微柱段的所述端部。 第一流体导管连接到流动浇口界面的第一微柱段并与其流体连通。 第二流体传导装置具有微柱。 该微柱连接到流动浇口界面的第二微柱段并与其流体连通。 冲洗液供应商连接到通道并与通道流体连通。
    • 8. 发明授权
    • Preparative capillary electrophoresis with wide-bore capillary
    • 具有宽孔毛细管的制备性毛细管电泳
    • US5658446A
    • 1997-08-19
    • US688351
    • 1996-07-30
    • Hongfeng YinDouglass McManigillCatherine A. Keely-TemplinRobert R. Holloway
    • Hongfeng YinDouglass McManigillCatherine A. Keely-TemplinRobert R. Holloway
    • G01N27/447G01N27/26
    • G01N27/44704
    • A wide-bore capillary electrophoresis apparatus for the analysis of analyte ions is provided. The apparatus has a wide-bore capillary that has a restriction zone at one or more ends. The capillary has an inlet end and an outlet end and an opening at each of said ends. The restriction zone is capable of providing fluid communication between the wide bore and the opening at said end. The restriction zone includes a narrow bore extending to the opening and a transition zone providing gradual change of bore diameter from the wide bore to the narrow bore. The apparatus further has a buffer source to supply buffer to the inlet end of the capillary and a power supply for supplying power to drive buffer and analyte ions through the capillary. During CE, electrodes provide electrical communication between the power supply and the inlet end and the outlet end and apply a voltage differential between said ends.
    • 提供了一种用于分析离子的分析的宽孔毛细管电泳装置。 该装置具有在一个或多个端部处具有限制区的宽孔毛细管。 毛细管具有入口端和出口端以及在每个端部处的开口。 限制区域能够在所述端部的宽孔和开口之间提供流体连通。 限制区域包括延伸到开口的窄孔和过渡区,其提供从宽孔到窄孔的孔直径的逐渐变化。 该装置还具有缓冲源,以向毛细管的入口端供应缓冲器,以及用于通过毛细管向驱动缓冲器和分析物离子供电的电源。 在CE期间,电极在电源与入口端和出口端之间提供电气连通,并在所述端部之间施加电压差。