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Development of Ion Mobility Spectrometry with Novel Atmospheric Electron Emission Ionization for Field Detection of Gaseous and Blister Chemical Warfare Agents

机译:具有新型大气电子发射电离的离子迁移光谱法的开发,用于气体和泡沫化学致原因的田间检测

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摘要

Drift tube ion mobility spectrometry with a novel atmospheric electron emission (AEE) source was developed for determination of gaseous and blister chemical warfare agents (CWAs) in negative mode. The AEE source was fabricated from an aluminum substrate electrode covered with 1 mu m silver nanoparticle-dispersed silicone resin and a thin gold layer. This structure enabled stable tunneling electron emission upon the application of more than 11 V potential under atmospheric pressure. The reactant ion peak (RIP) was observed for the reduced mobility constant (K-0) of 2.18 and optimized at the charging voltage of 20 V. This RIP was assigned to 02 by using a mass spectrometer. Hydrogen cyanide was detected as a peak (K-0 = 2.47) that was discriminatively separated from the RIP (resolution = 1.4), with a limit of detection (LOD) of 0.057 mg/m(3), and assigned to CN- and OCN-. Phosgene was detected as a peak (K-0 = 2.36; resolution = 1.2; and LOD = 0.6 mg/m(3)), which was assigned to Cl-. Lewisite 1 was detected as two peaks (K-0 = 1.68 and 1.34; LOD = 12 and 15 mg/m(3)). The K-0 = 1.68 peak was ascribed to a mixture of adducts of molecules or the product of hydrolysis with oxygen or chloride. Cyanogen chloride, chlorine, and sulfur mustard were also well detected. The detection performance with the AEE source was compared with those under corona discharge and Ni-63 ionizations. The advantage of the AEE source is the simple RIP pattern (only O-2(-)), and the characteristic marker ions contribute to the discriminative CWAs detection.
机译:利用新型大气电子发射(AEE)来源的漂移管离子迁移光谱法用于测定负面模式中的气态和泡罩化学造力剂(CWAS)。 AEE源由覆盖有1μm银纳米颗粒分散的硅树脂和薄金层覆盖的铝基板电极。该结构使在大气压下施加超过11V电位的施加稳定的隧道发射。观察到反应物离子峰(RIP)对于2.18的降低的迁移率恒定(K-0)并在20V的充电电压下优化。通过使用质谱仪将该RIP分配给02。氰化氢被检测为峰值(K-0 = 2.47),其与RIP(分辨率= 1.4)差异分离,有0.057mg / m(3)的检测限,并分配给CN-和OCN-。将光气被检测为峰(K-0 = 2.36;分辨率= 1.2;和LOD = 0.6mg / m(3)),分配给CL-。将Lewisite 1检测为两个峰(K-0 = 1.68和1.34; LOD = 12和15mg / m(3))。 K-0 = 1.68峰被归因于分子加合物的混合物或用氧或氯化物的水解产物。氯化氰,氯和硫芥末也被良好检测到。将与AEES源的检测性能与电晕放电和Ni-63电离的相比进行了比较。 AEE源的优点是简单的RIP模式(仅O-2( - )),特征标记离子有助于鉴别性CWAS检测。

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  • 来源
    《Analytical chemistry》 |2019年第8期|共12页
  • 作者单位

    Natl Res Inst Police Sci 6-3-1 Kashiwanoha Kashiwa Chiba 2770882 Japan;

    Natl Res Inst Police Sci 6-3-1 Kashiwanoha Kashiwa Chiba 2770882 Japan;

    Natl Res Inst Police Sci 6-3-1 Kashiwanoha Kashiwa Chiba 2770882 Japan;

    Natl Res Inst Police Sci 6-3-1 Kashiwanoha Kashiwa Chiba 2770882 Japan;

    Natl Res Inst Police Sci 6-3-1 Kashiwanoha Kashiwa Chiba 2770882 Japan;

    Sharp Co Ltd Adv Technol Dev Unit Business Solut BU 492 Minosho Cho Yamato Koriyama Nara 6391186 Japan;

    Sharp Co Ltd Adv Technol Dev Unit Business Solut BU 492 Minosho Cho Yamato Koriyama Nara 6391186 Japan;

    Sharp Co Ltd Adv Technol Dev Unit Business Solut BU 492 Minosho Cho Yamato Koriyama Nara 6391186 Japan;

    Sharp Co Ltd Adv Technol Dev Unit Business Solut BU 492 Minosho Cho Yamato Koriyama Nara 6391186 Japan;

    Sharp Co Ltd Adv Technol Dev Unit Business Solut BU 492 Minosho Cho Yamato Koriyama Nara 6391186 Japan;

    RIKEN KEIKI Co Ltd Itabashi Ku 2-7-6 Azusawa Tokyo 1748744 Japan;

    RIKEN KEIKI Co Ltd Itabashi Ku 2-7-6 Azusawa Tokyo 1748744 Japan;

    RIKEN KEIKI Co Ltd Itabashi Ku 2-7-6 Azusawa Tokyo 1748744 Japan;

    RIKEN KEIKI Co Ltd Itabashi Ku 2-7-6 Azusawa Tokyo 1748744 Japan;

    RIKEN KEIKI Co Ltd Itabashi Ku 2-7-6 Azusawa Tokyo 1748744 Japan;

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  • 正文语种 eng
  • 中图分类 分析化学;
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