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通过超声辅助喷雾电离质谱法对加速化学反应进行实时监测。

Real time monitoring of accelerated chemical reactions by ultrasonication-assisted spray ionization mass spectrometry.

作者信息

Lin Shu-Hsuan, Lo Ta-Ju, Kuo Fang-Yin, Chen Yu-Chie

机构信息

Department of Applied Chemistry, National Chiao Tung University, Hsinchu, 300, Taiwan.

出版信息

J Mass Spectrom. 2014 Jan;49(1):50-6. doi: 10.1002/jms.3319.

Abstract

Ultrasonication has been used to accelerate chemical reactions. It would be ideal if ultrasonication-assisted chemical reactions could be monitored by suitable detection tools such as mass spectrometry in real time. It would be helpful to clarify reaction intermediates/products and to have a better understanding of reaction mechanism. In this work, we developed a system for ultrasonication-assisted spray ionization mass spectrometry (UASI-MS) with an ~1.7 MHz ultrasonic transducer to monitor chemical reactions in real time. We demonstrated that simply depositing a sample solution on the MHz-based ultrasonic transducer, which was placed in front of the orifice of a mass spectrometer, the analyte signals can be readily detected by the mass spectrometer. Singly and multiply charged ions from small and large molecules, respectively, can be observed in the UASI mass spectra. Furthermore, the ultrasonic transducer used in the UASI setup accelerates the chemical reactions while being monitored via UASI-MS. The feasibility of using this approach for real-time acceleration/monitoring of chemical reactions was demonstrated. The reactions of Girard T reagent and hydroxylamine with steroids were used as the model reactions. Upon the deposition of reactant solutions on the ultrasonic transducer, the intermediate/product ions are readily generated and instantaneously monitored using MS within 1 s. Additionally, we also showed the possibility of using this reactive UASI-MS approach to assist the confirmation of trace steroids from complex urine samples by monitoring the generation of the product ions.

摘要

超声处理已被用于加速化学反应。如果能通过合适的检测工具(如质谱)实时监测超声辅助化学反应,那将是非常理想的。这将有助于阐明反应中间体/产物,并更好地理解反应机理。在这项工作中,我们开发了一种用于超声辅助喷雾电离质谱(UASI-MS)的系统,该系统配备了一个约1.7 MHz的超声换能器,以实时监测化学反应。我们证明,只需将样品溶液滴在置于质谱仪进样口前的基于MHz的超声换能器上,质谱仪就能轻松检测到分析物信号。在UASI质谱图中可以分别观察到小分子和大分子的单电荷和多电荷离子。此外,UASI装置中使用的超声换能器在通过UASI-MS监测的同时加速了化学反应。证明了使用这种方法实时加速/监测化学反应的可行性。吉拉德T试剂和羟胺与甾体的反应被用作模型反应。将反应物溶液滴在超声换能器上后,中间产物/产物离子很容易生成,并在1秒内用质谱仪即时监测。此外,我们还展示了使用这种反应性UASI-MS方法通过监测产物离子的生成来辅助确认复杂尿液样品中痕量甾体的可能性。

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