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    • 1. 发明授权
    • Ion transfer device
    • 离子转移装置
    • US08008617B1
    • 2011-08-30
    • US12344872
    • 2008-12-29
    • John C. Berends, Jr.Timothy P. KarpetskyRoss C. WilloughbyEdward W. Sheehan
    • John C. Berends, Jr.Timothy P. KarpetskyRoss C. WilloughbyEdward W. Sheehan
    • B01D59/44
    • H01J49/0422
    • Ions carried in a flowing gas stream are transferred to another gas stream of different composition or purity through an ion selective aperture communicating between the gas streams. The ion selective aperture is formed of a central layer which has an electrically conductive layer on each of its surfaces. One or more open channels extend through the central layer and surface layers allowing physical movement of ions therethrough under the urging and influence of an electric field created by imposing a voltage differential between the conductive surface layers of the ion selective aperture. The gas flow rates of the different gas streams may be independently varied to allow adjustment of ion concentration and flow rate to meet the needs of the ion destination. This device can control sample ion introduction into gas-phase ion detectors, such as ion mobility analyzers, differential mobility analyzers, mass spectrometers, and combinations thereof.
    • 携带在流动气流中的离子通过在气流之间连通的离子选择孔转移到不同组成或纯度的另一种气流中。 离子选择孔由中心层形成,在其每个表面上具有导电层。 在通过在离子选择孔的导电表面层之间施加电压差而产生的电场的推动和影响下,一个或多个开放通道延伸穿过中心层和表面层,允许离子物理移动。 可以独立地改变不同气流的气体流速,以允许调节离子浓度和流速以满足离子目的地的需要。 该装置可以将样品离子引入气相离子检测器,例如离子迁移率分析仪,差速移动分析仪,质谱仪及其组合。
    • 2. 发明授权
    • Remote reagent ion generator
    • 远程试剂离子发生器
    • US07569812B1
    • 2009-08-04
    • US11544252
    • 2006-10-07
    • Timothy P. KarpetskyJohn C. Berends, Jr.Edward W. SheehanRoss C. Willoughby
    • Timothy P. KarpetskyJohn C. Berends, Jr.Edward W. SheehanRoss C. Willoughby
    • B01D59/44H01J49/00
    • H01J49/145H01J49/0468H01J49/067
    • An improved ion source and means for collecting and focusing dispersed gas-phase ions from a remote reagent chemical ionization source (R2CIS) at atmospheric or intermediate pressure is described. The R2CIS is under electronic control and can produce positive, negative, or positive and negative reagent ions simultaneously. This remote source of reagent ions is separated from a low-field sample ionization region by a stratified array of elements, each element populated with a plurality of openings, wherein DC potentials are applied to each element necessary for transferring reagent ions from the R2CIS into the low-field sample ionization region where the reagent ions react with neutral and/or ionic sample forming sample ionic species. The resulting sample ionic species are then introduced into a mass spectrometer, ion mobility spectrometer or other sensor capable of detecting the sample ions. Embodiments of this invention are methods and devices for improving sensitivity of mass spectrometry when gas and liquid chromatographic separation techniques are coupled to atmospheric and intermediate pressure photo-ionization, chemical ionization, and thermospray ionization sources; and improving the sensitivity of chemical detectors or probes.
    • 描述了改进的离子源和用于在大气压或中压下从远程试剂化学电离源(R2CIS)收集和聚焦分散的气相离子的装置。 R2CIS处于电子控制下,可以同时产生正,负或正,负反应离子。 这种远程的试剂离子源通过分层阵列的元件与低场样品电离区域分开,每个元件填充有多个开口,其中DC电位被施加到将试剂离子从R2CIS转移到 低场样品电离区域,其中试剂离子与形成样品离子物质的中性和/或离子样品反应。 然后将所得样品离子物质引入质谱仪,离子迁移谱仪或能够检测样品离子的其他传感器。 本发明的实施例是当气体和液相色谱分离技术耦合到大气和中压光电离,化学电离和热喷射电离源时提高质谱的灵敏度的方法和装置; 并提高化学检测器或探针的灵敏度。
    • 10. 发明授权
    • Method and apparatus for the collection of samples
    • 收集样品的方法和装置
    • US07073403B2
    • 2006-07-11
    • US10988915
    • 2004-11-15
    • Thomas G. AlbroJohn C. Berends, Jr.
    • Thomas G. AlbroJohn C. Berends, Jr.
    • G01N1/14
    • G08B21/14
    • A system for the collection of near real time confirmation samples is provided to quickly eliminate false positive alarms by confirming the presence or absence of a chemical agent when a monitor operating in near real time to detect the presence of that chemical agent generates an alarm. The confirmation sampling system is synchronized with the near real time monitor and the confirmation sampler and monitor draw common samples of the atmosphere of concern. In the event that the monitor generates an alarm, the confirmation sampler preserves the sample taken contemporaneously with the alarm event for separate analysis, and also takes and preserves one or more follow-on samples.
    • 提供用于收集近实时确认样品的系统,以便在近乎实时操作的监视器检测到该化学试剂的存在产生报警时,通过确认化学试剂的存在或不存在来快速消除假阳性报警。 确认采样系统与近实时监控器同步,确认采样器和监视器绘制所关注的气氛的常见样品。 如果监视器产生警报,则确认采样器会保留与报警事件同时采集的样本以进行单独分析,并且还将保留一个或多个后续样本。