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快速蒸发-自吸进样介质阻挡放电电离源研制及性能测试

张硕 陆欣鑫 陈雨琳 邓旭杰 王博文 李晓旭

分析化学2025,Vol.53Issue(4):561-567,7.
分析化学2025,Vol.53Issue(4):561-567,7.DOI:10.19756/j.issn.0253-3820.241468

快速蒸发-自吸进样介质阻挡放电电离源研制及性能测试

Development and Performance Test of Dielectric Barrier Discharge Ionization Source with Rapid Evaporation and Self-aspiration Sampling

张硕 1陆欣鑫 1陈雨琳 1邓旭杰 1王博文 1李晓旭1

作者信息

  • 1. 苏州大学机电工程学院,苏州 215021
  • 折叠

摘要

Abstract

A dielectric barrier discharge ionization source with rapid evaporation and self-aspiration sampling(RE-SADBDI)was developed,integrating a rapid evaporation(RE)module and a dielectric barrier discharge ionization(DBDI)module.The sample was introduced into the RE module via a sampling swab and rapidly vaporized within it.The sealed design of the ionization source could enable the sample to be self-aspirated into the ionization region without the need of additional inert gas.All vaporized sample was efficiently directed into the ionization region due to the relatively enclosed environment for sample transfer and ionization,resulting in improved transfer and ionization efficiencies.Experimental results showed that the limit of detection(LOD)under ion isolation mode reached 0.05 ng/mL(caffeine),with a relative standard deviation(RSD)of 6.9%.Furthermore,when coupled with a miniaturized linear ion trap mass spectrometer,the source enabled real-time analysis of various sample types.The developed RE-SADBDI source was suitable for on-site analysis with miniaturized mass spectrometers.

关键词

小型化质谱仪/原位电离源/介质阻挡放电/现场检测

Key words

Miniaturized mass spectrometer/In-situ ionization source/Dielectric barrier discharge/On-site detection

引用本文复制引用

张硕,陆欣鑫,陈雨琳,邓旭杰,王博文,李晓旭..快速蒸发-自吸进样介质阻挡放电电离源研制及性能测试[J].分析化学,2025,53(4):561-567,7.

基金项目

国家自然科学基金项目(No.61971297)资助. Supported by the National Natural Science Foundation of China(No.61971297). (No.61971297)

分析化学

OA北大核心

0253-3820

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