Yan Zitao, Shan Lixin, Cheng Shiyu, Yu Zhangqi, Wei Zhiyang, Wang Haijie, Sun Haohang, Yang Bo, Shu Jinian, Li Zhen
Research Center for Environmental Material and Pollution Control Technology, University of Chinese Academy of Sciences, Beijing 101408, People's Republic of China.
National Engineering Laboratory for VOCs Pollution Control Material & Technology, Beijing 101408, People's Republic of China.
Anal Chem. 2023 Aug 15;95(32):11859-11867. doi: 10.1021/acs.analchem.3c01021. Epub 2023 Jul 20.
Single-photon ionization (SPI) is a unique soft ionization technique for organic analysis. A convenient high-flux vacuum ultraviolet (VUV) light source is a key precondition for wide application of SPI techniques. In this study, we present a novel VUV lamp by simply modifying an ordinary electrodeless fluorescent lamp. By replacing the glass bulb with a stainless steel bulb and introducing 5% Kr/He (v/v) as the excitation gas, an excellent VUV photon flux over 4.0 × 10 photons s was obtained. Due to its rapid glow characteristics, the VUV lamp can be switched on and off instantly as required by detection, ensuring the stability and service life of the lamp. To demonstrate the performance of the new lamp, the switchable VUV lamp was coupled with an SPI-mass spectrometer, which could be changed to photoinduced associative ionization (PAI) mode by doping gaseous CHCl to initiate an associative ionization reaction. Two types of volatile organic compounds sensitive to SPI and PAI, typically benzene series and oxygenated organics, respectively, were selected as samples. The instrument exhibited a high detection sensitivity for the tested compounds. With a measurement time of 11 s, the 3σ limits of detection ranged from 0.33 to 0.75 pptv in SPI mode and from 0.03 to 0.12 pptv in PAI mode. This study provides an extremely simple method to assemble a VUV lamp with many merits, e.g., portability, robustness, durability, low cost, and high flux. The VUV lamp may contribute to the development of SPI-related highly sensitive detection technologies.
单光子电离(SPI)是一种用于有机分析的独特软电离技术。便捷的高通量真空紫外(VUV)光源是SPI技术广泛应用的关键前提。在本研究中,我们通过简单改装普通无电极荧光灯,提出了一种新型VUV灯。通过用不锈钢灯泡替换玻璃灯泡,并引入5%的Kr/He(体积比)作为激发气体,获得了超过4.0×10光子/秒的优异VUV光子通量。由于其快速发光特性,VUV灯可根据检测需要即时开关,确保了灯的稳定性和使用寿命。为了展示新灯的性能,将可切换VUV灯与SPI质谱仪联用,通过掺杂气态CHCl引发缔合电离反应,可将其转变为光致缔合电离(PAI)模式。分别选择对SPI和PAI敏感的两类挥发性有机化合物,即典型的苯系物和含氧有机物作为样品。该仪器对测试化合物表现出高检测灵敏度。在测量时间为11秒时,SPI模式下的3σ检测限范围为0.33至0.75 pptv(皮克/万亿体积),PAI模式下为0.03至0.12 pptv。本研究提供了一种极其简单的方法来组装具有诸多优点的VUV灯,例如便携性、坚固性、耐用性、低成本和高通量。该VUV灯可能有助于SPI相关高灵敏度检测技术的发展。