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Improving the Sensitivity and Resolution of Miniature Ion Mobility Spectrometers with a Capacitive Trans Impedance Amplifier

机译:使用电容式跨阻放大器提高微型离子迁移谱仪的灵敏度和分辨率

摘要

The selectivity and sensitivity of ion mobility spectrometry (IMS) to explosives was first demonstrated by Karasek in 1974.1 Airport security has always been a concern in the United States, especially since September 11th, 2001, and as a result IMS is commonly used to screen airline passengers and their luggage at all major airports. Portable IMS systems are now widely available for a variety of applications, but as the overall size of the IMS instrumentation decreases, the sensitivity typically decreases as well. A new ion detector read out technology, a capacitive trans-impedance amplifier (CTIA), coupled to a traditional Faraday plate has shown increased sensitivity over a Faraday plate read by a conventional current to voltage converter when used in mass spectrometry. Sandia National Laboratories sponsored a project to determine whether the CTIA technology could be coupled to an IMS, and to determine the potential increase in sensitivity that could be provided to a miniature IMS equipped with the new read out technology.Sandia first provided a full size IMS, a Phemto-Chem PCP-110, which was modified to support the first generation of CTIA (CTIA1). The CTIA1 was coupled to the IMS and was successfully used to detect explosives. Next, Sandia provided miniature IMS drift tubes, but incompatibilities necessitated the design of new miniature systems. At first, only the drift tube itself was redesigned, but eventually a complete miniature IMS, including the ionizer, circuitry, and read out, was designed and built. During the design phase a new ion-beam shutter capable of increased resolution was also implemented. The second generation of CTIA was coupled to a custom drift tube and the system demonstrated increased resolution and drastically increased sensitivity to the common explosives TNT and RDX when compared to the sensitivity of the system provided by Sandia. A custom miniature drift tube coupled to a CTIA will be placed into the peripheral equipment for Sandia's MicroHound II instrumentation to provide a portable IMS with sensitivity equal to or better than bench top IMS systems.
机译:离子迁移谱(IMS)对炸药的选择性和敏感性最初是由Karasek于1974.1年证明的,在美国,尤其是从2001年9月11日开始,机场安全一直是人们关注的焦点,因此,IMS被普遍用于筛选航空公司所有主要机场的乘客及其行李。便携式IMS系统现已广泛用于各种应用程序,但是随着IMS仪器的总体尺寸减小,灵敏度通常也会降低。一种新的离子检测器读出技术,即电容跨阻放大器(CTIA),与传统的法拉第板耦合,在质谱分析中显示出比通过常规电流电压转换器读取的法拉第板更高的灵敏度。桑迪亚国家实验室(Sandia National Laboratories)发起了一个项目,以确定CTIA技术是否可以与IMS结合使用,并确定配备新读出技术的微型IMS可能带来的灵敏度提升.Sandia首先提供了全尺寸IMS ,是Phemto-Chem PCP-110,经过修改以支持第一代CTIA(CTIA1)。 CTIA1与IMS耦合,已成功用于探测爆炸物。接下来,桑迪亚(Sandia)提供了微型IMS漂移管,但由于不兼容,必须设计新的微型系统。最初,仅对漂移管本身进行了重新设计,但最终设计并制造了包括电离器,电路和读数在内的完整的微型IMS。在设计阶段,还实现了能够提高分辨率的新型离子束快门。第二代CTIA与定制的漂移管耦合,与Sandia提供的系统灵敏度相比,该系统显示出更高的分辨率,并且对普通炸药TNT和RDX的灵敏度大大提高。将与CTIA耦合的定制微型漂移管放置在Sandia MicroHound II仪器的外围设备中,以提供灵敏度等于或优于台式IMS系统的便携式IMS。

著录项

  • 作者

    Denson Stephen Charles;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 EN
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