School of Chemistry and Chemical Engineering, Shenyang Normal University, Shenyang 110034, Liaoning, China.
Analyst. 2020 May 7;145(9):3313-3319. doi: 10.1039/d0an00305k. Epub 2020 Mar 20.
Probe electrospray ionization mass spectrometry (PESI-MS) has been demonstrated to be a useful in situ and online analytical technique for monitoring of various reactions. In this work, PESI-MS with a surface-modified probe was adopted and applied to in situ monitoring of photocatalytic reactions. Typical reactions of semiconductor photocatalysts, namely TiO, SnO, WO, SiC and ZnS catalyzed methylene blue (MB) and brilliant green (BG) degradation, were selected to demonstrate the potential of PESI-MS to monitor heterogeneous photocatalytic reactions occurring in suspensions. Surface modification of the probe ensures increased wettability during the whole monitoring process. PESI-MS could provide continuous sampling and real-time MS results without time-consuming and cumbersome sample pretreatments. This method has other merits including good reproducibility and stability (time scale > 60 min), convenience of operation, low sample consumption, high time resolution and high tolerance to suspended photocatalyst particles. Time-resolved mass spectra and ion chromatograms of every chemical species e.g. the substrate and reactive intermediates could be obtained, which is helpful for a better understanding of the photocatalytic reaction process. Thus, PESI-MS could be a versatile analytical technique for in situ photocatalytic reaction analysis and could be an alternative means for the evaluation of photocatalyst performance.
探针电喷雾电离质谱(PESI-MS)已被证明是一种有用的原位和在线分析技术,可用于监测各种反应。在这项工作中,采用了表面修饰的探针的 PESI-MS,并将其应用于光催化反应的原位监测。选择半导体光催化剂的典型反应,即 TiO、SnO、WO、SiC 和 ZnS 催化亚甲蓝(MB)和亮绿(BG)降解,以证明 PESI-MS 有潜力监测悬浮液中发生的多相光催化反应。探针的表面修饰可确保在整个监测过程中增加润湿性。PESI-MS 可以提供连续采样和实时 MS 结果,而无需耗时且繁琐的样品预处理。该方法具有其他优点,包括良好的重现性和稳定性(时间尺度>60 分钟)、操作方便、样品消耗低、时间分辨率高以及对悬浮光催化剂颗粒的高容忍度。可以获得每个化学物质(例如底物和反应中间体)的时间分辨质谱和离子色谱图,这有助于更好地理解光催化反应过程。因此,PESI-MS 可以成为一种用于原位光催化反应分析的多功能分析技术,并且可以作为评估光催化剂性能的替代手段。