...
首页> 外文期刊>Journal of mass spectrometry: JMS >Mechanism behind the paper spray chemical ionization phenomenon and the choice of solvent
【24h】

Mechanism behind the paper spray chemical ionization phenomenon and the choice of solvent

机译:纸张喷涂化学电离现象背后的机制和溶剂的选择

获取原文
获取原文并翻译 | 示例
           

摘要

Paper spray chemical ionization (PSCI) combined with mass spectrometry has been proposed as a sensitive method for the analysis of nonpolar aromatic compounds; however, the mechanism behind PSCI is not well understood. In the present study, the evidence for the occurrence of corona discharge is provided and its mechanism is proposed. Photographs taken with a highly sensitive camera evidently demonstrate the occurrence of corona discharge at the end of the triangular shape tip when a nonpolar solvent such as hexane was used at an applied potential of 6-7 kV. Nevertheless, corona discharge was not observed in the presence of a polar solvent. The occurrence of the corona discharge was attributed to charge accumulation in the dielectric layer generated by the nonpolar solvent on the fibers of the paper tip. Specifically, corona discharge was generated at the tip end when the charge approached a critical threshold. In the presence of a polar solvent, however, the dielectric layer was not generated and, hence, corona discharge was not observed. Based on this information, three nonpolar solvents were selected and their sensitivity for analyzing the phenanthrene and maltene fractions of crude oil was evaluated. Chlorobenzene provided the highest signal abundance; therefore, it was suggested as the optimum solvent for PSCI. Notably, the fundamental understanding of corona discharge in PSCI acquired in this study provides a basis for further improvement of this technique by way of surface modification.
机译:纸喷雾化学电离(PSCI)与质谱联用是分析非极性芳香族化合物的灵敏方法;然而,PSCI背后的机制尚不清楚。本研究为电晕放电的发生提供了证据,并提出了其机理。使用高灵敏度相机拍摄的照片明显显示,当在6-7 kV的外加电位下使用非极性溶剂(如己烷)时,三角形尖端末端发生电晕放电。然而,在极性溶剂存在下未观察到电晕放电。电晕放电的发生归因于纸端纤维上的非极性溶剂在介电层中产生的电荷积聚。具体来说,当电荷接近临界阈值时,电晕放电在尖端产生。然而,在极性溶剂存在的情况下,不会产生介电层,因此未观察到电晕放电。根据这些信息,选择了三种非极性溶剂,并评估了它们对分析原油中菲和麦芽烯馏分的灵敏度。氯苯提供了最高的信号丰度;因此,建议将其作为PSCI的最佳溶剂。值得注意的是,本研究对PSCI电晕放电的基本认识为通过表面改性进一步改进该技术提供了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号