会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Method of multiplexed analysis using ion mobility spectrometer
    • 使用离子迁移谱仪的多重分析方法
    • US07541576B2
    • 2009-06-02
    • US11701752
    • 2007-02-01
    • Mikhail E. BelovRichard D. Smith
    • Mikhail E. BelovRichard D. Smith
    • H01J49/40
    • H01J49/0031G01N27/622
    • A method for analyzing analytes from a sample introduced into a Spectrometer by generating a pseudo random sequence of a modulation bins, organizing each modulation bin as a series of submodulation bins, thereby forming an extended pseudo random sequence of submodulation bins, releasing the analytes in a series of analyte packets into a Spectrometer, thereby generating an unknown original ion signal vector, detecting the analytes at a detector, and characterizing the sample using the plurality of analyte signal subvectors. The method is advantageously applied to an Ion Mobility Spectrometer, and an Ion Mobility Spectrometer interfaced with a Time of Flight Mass Spectrometer.
    • 一种用于通过产生调制箱的伪随机序列来分析从引入到光谱仪中的样品的分析物的方法,将每个调制箱组织成一系列的子调制箱,由此形成扩频的伪随机序列的子调制箱,将分析物在 一系列分析物分组进入光谱仪,从而产生未知的原始离子信号矢量,检测检测器处的​​分析物,并使用多个分析物信号子矢量表征样品。 该方法有利地应用于离子移动光谱仪和与飞行时间质谱仪接口的离子迁移光谱仪。
    • 4. 发明申请
    • Method of multiplexed analysis using ion mobility spectrometer
    • 使用离子迁移谱仪的多重分析方法
    • US20080185513A1
    • 2008-08-07
    • US11701752
    • 2007-02-01
    • Mikhail E. BelovRichard D. Smith
    • Mikhail E. BelovRichard D. Smith
    • H01J49/04
    • H01J49/0031G01N27/622
    • A method for analyzing analytes from a sample introduced into a Spectrometer by generating a pseudo random sequence of a modulation bins, organizing each modulation bin as a series of submodulation bins, thereby forming an extended pseudo random sequence of submodulation bins, releasing the analytes in a series of analyte packets into a Spectrometer, thereby generating an unknown original ion signal vector, detecting the analytes at a detector, and characterizing the sample using the plurality of analyte signal subvectors. The method is advantageously applied to an Ion Mobility Spectrometer, and an Ion Mobility Spectrometer interfaced with a Time of Flight Mass Spectrometer.
    • 一种用于通过产生调制箱的伪随机序列来分析从引入到光谱仪中的样品的分析物的方法,将每个调制箱组织成一系列的子调制箱,由此形成扩频的伪随机序列的子调制箱,将分析物在 一系列分析物分组进入光谱仪,从而产生未知的原始离子信号矢量,检测检测器处的​​分析物,并使用多个分析物信号子矢量表征样品。 该方法有利地应用于离子移动光谱仪和与飞行时间质谱仪接口的离子迁移光谱仪。
    • 5. 发明申请
    • DYNAMIC MULTIPLEXED ANALYSIS METHOD USING ION MOBILITY SPECTROMETER
    • 动态多项式分析方法使用离子移动光谱仪
    • US20090294644A1
    • 2009-12-03
    • US12132303
    • 2008-06-03
    • Mikhail E. Belov
    • Mikhail E. Belov
    • B01D59/44
    • H01J49/40G01N27/622H01J49/0031H01J49/066H01J49/4265
    • A method for multiplexed analysis using ion mobility spectrometer in which the effectiveness and efficiency of the multiplexed method is optimized by automatically adjusting rates of passage of analyte materials through an IMS drift tube during operation of the system. This automatic adjustment is performed by the IMS instrument itself after determining the appropriate levels of adjustment according to the method of the present invention. In one example, the adjustment of the rates of passage for these materials is determined by quantifying the total number of analyte molecules delivered to the ion trap in a preselected period of time, comparing this number to the charge capacity of the ion trap, selecting a gate opening sequence; and implementing the selected gate opening sequence to obtain a preselected rate of analytes within said IMS drift tube.
    • 一种使用离子迁移谱仪进行复用分析的方法,其中通过在系统操作期间自动调节分析物质通过IMS漂移管的通过速率来优化复用方法的有效性和效率。 在根据本发明的方法确定适当的调整水平之后,由IMS仪器本身进行该自动调整。 在一个实例中,对这些材料的通过速率的调整通过在预选的时间段内量化输送到离子阱的分析物分子的总数来确定,将该数目与离子阱的电荷容量进行比较,选择 门打开序列; 并实施所选择的开门序列以获得所述IMS漂移管内的分析物的预选速率。
    • 6. 发明授权
    • Orthogonal ion injection apparatus and process
    • 正交离子注入装置及工艺
    • US08698075B2
    • 2014-04-15
    • US13114869
    • 2011-05-24
    • Ruwan T. KurulugamaMikhail E. Belov
    • Ruwan T. KurulugamaMikhail E. Belov
    • H01J49/06
    • H01J49/065H01J49/0404H01J49/044
    • An orthogonal ion injection apparatus and process are described in which ions are directly injected into an ion guide orthogonal to the ion guide axis through an inlet opening located on a side of the ion guide. The end of the heated capillary is placed inside the ion guide such that the ions are directly injected into DC and RF fields inside the ion guide, which efficiently confines ions inside the ion guide. Liquid droplets created by the ionization source that are carried through the capillary into the ion guide are removed from the ion guide by a strong directional gas flow through an inlet opening on the opposite side of the ion guide. Strong DC and RF fields divert ions into the ion guide. In-guide orthogonal injection yields a noise level that is a factor of 1.5 to 2 lower than conventional inline injection known in the art. Signal intensities for low m/z ions are greater compared to convention inline injection under the same processing conditions.
    • 描述了一种正交离子注入装置和方法,其中离子通过位于离子导向器一侧的入口直接注入垂直于离子引导轴的离子导向器中。 加热的毛细管的末端放置在离子导向器内,使得离子直接注入到离子导向器内的DC和RF场中,这有效地将离子限制在离子导向器内。 由电离源产生的通过毛细管进入离子导向器的液滴通过强力的定向气流从离子导向器的相反侧的入口开口从离子导向器移除。 强直流和射频场将离子转移到离子导向器中。 导向正交注入产生比现有技术中已知的常规在线注入低1.5至2倍的噪声电平。 在相同的处理条件下,与常规的直线注入相比,低m / z离子的信号强度更大。
    • 9. 发明授权
    • Dynamic multiplexed analysis method using ion mobility spectrometer
    • 使用离子迁移谱仪的动态多重分析方法
    • US07718957B2
    • 2010-05-18
    • US12132303
    • 2008-06-03
    • Mikhail E. Belov
    • Mikhail E. Belov
    • H01J49/40H01J49/26B01D59/44
    • H01J49/40G01N27/622H01J49/0031H01J49/066H01J49/4265
    • A method for multiplexed analysis using ion mobility spectrometer in which the effectiveness and efficiency of the multiplexed method is optimized by automatically adjusting rates of passage of analyte materials through an IMS drift tube during operation of the system. This automatic adjustment is performed by the IMS instrument itself after determining the appropriate levels of adjustment according to the method of the present invention. In one example, the adjustment of the rates of passage for these materials is determined by quantifying the total number of analyte molecules delivered to the ion trap in a preselected period of time, comparing this number to the charge capacity of the ion trap, selecting a gate opening sequence; and implementing the selected gate opening sequence to obtain a preselected rate of analytes within said IMS drift tube.
    • 一种使用离子迁移谱仪进行复用分析的方法,其中通过在系统操作期间自动调节分析物质通过IMS漂移管的通过速率来优化复用方法的有效性和效率。 在根据本发明的方法确定适当的调整水平之后,由IMS仪器本身进行该自动调整。 在一个实例中,对这些材料的通过速率的调整通过在预选的时间段内量化输送到离子阱的分析物分子的总数来确定,将该数目与离子阱的电荷容量进行比较,选择 门打开序列; 并实施所选择的开门序列以获得所述IMS漂移管内的分析物的预选速率。
    • 10. 发明申请
    • ORTHOGONAL ION INJECTION APPARATUS AND PROCESS
    • 正交离子注射装置和方法
    • US20120298853A1
    • 2012-11-29
    • US13114869
    • 2011-05-24
    • Ruwan T. KurulugamaMikhail E. Belov
    • Ruwan T. KurulugamaMikhail E. Belov
    • H01J49/22H01J49/00
    • H01J49/065H01J49/0404H01J49/044
    • An orthogonal ion injection apparatus and process are described in which ions are directly injected into an ion guide orthogonal to the ion guide axis through an inlet opening located on a side of the ion guide. The end of the heated capillary is placed inside the ion guide such that the ions are directly injected into DC and RF fields inside the ion guide, which efficiently confines ions inside the ion guide. Liquid droplets created by the ionization source that are carried through the capillary into the ion guide are removed from the ion guide by a strong directional gas flow through an inlet opening on the opposite side of the ion guide. Strong DC and RF fields divert ions into the ion guide. In-guide orthogonal injection yields a noise level that is a factor of 1.5 to 2 lower than conventional inline injection known in the art. Signal intensities for low m/z ions are greater compared to convention inline injection under the same processing conditions.
    • 描述了一种正交离子注入装置和方法,其中离子通过位于离子导向器一侧的入口直接注入垂直于离子引导轴的离子导向器中。 加热的毛细管的末端放置在离子导向器内,使得离子直接注入到离子导向器内的DC和RF场中,这有效地将离子限制在离子导向器内。 由电离源产生的通过毛细管进入离子导向器的液滴通过强力的定向气流从离子导向器的相反侧的入口开口从离子导向器移除。 强直流和射频场将离子转移到离子导向器中。 导向正交注入产生比现有技术中已知的常规在线注入低1.5至2倍的噪声电平。 在相同的处理条件下,与常规的直线注入相比,低m / z离子的信号强度更大。