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一种通过电喷雾质谱法表征溶液相和气相光化学反应的“一锅式”质谱技术。

A "one pot" mass spectrometry technique for characterizing solution- and gas-phase photochemical reactions by electrospray mass spectrometry.

作者信息

Cercola Rosaria, Wong Natalie G K, Rhodes Chris, Olijnyk Lorna, Mistry Neetisha S, Hall Lewis M, Berenbeim Jacob A, Lynam Jason M, Dessent Caroline E H

机构信息

Department of Chemistry, University of York Heslington York YO10 5DD UK

出版信息

RSC Adv. 2021 May 28;11(32):19500-19507. doi: 10.1039/d1ra02581c. eCollection 2021 May 27.

Abstract

The characterization of new photochemical pathways is important to progress the understanding of emerging areas of light-triggered inorganic and organic chemistry. In this context, the development of platforms to perform routine characterization of photochemical reactions remains an important goal for photochemists. Here, we demonstrate a new instrument that can be used to characterise both solution-phase and gas-phase photochemical reactions through electrospray ionisation mass spectrometry (ESI-MS). The gas-phase photochemistry is studied by novel laser-interfaced mass spectrometry (LIMS), where the molecular species of interest is introduced to the gas-phase by ESI, mass-selected and then subjected to laser photodissociation in the ion-trap. On-line solution-phase photochemistry is initiated by LEDs prior to ESI-MS in the same instrument with ESI-MS again being used to monitor photoproducts. Two ruthenium metal carbonyls, [Ru(η-CH)(PPh)CO][PF] and [Ru(η-CH)(dppe)CO][PF] (dppe = 1,2-bis(diphenylphosphino)ethane) are studied using this methodology. We show that the gas-phase photofragmentation pathways observed for the ruthenium complexes LIMS ( loss of CO + PPh ligands from [Ru(η-CH)(PPh)CO] and loss of just CO from [Ru(η-CH)(dppe)CO]) mirror the solution-phase photochemistry at 3.4 eV. The advantages of performing the gas-phase and solution-phase photochemical characterisations in a single instrument are discussed.

摘要

新光化学途径的表征对于推动对光触发的无机和有机化学新兴领域的理解至关重要。在此背景下,开发用于光化学反应常规表征的平台仍然是光化学家的一个重要目标。在这里,我们展示了一种新仪器,它可通过电喷雾电离质谱(ESI-MS)用于表征溶液相和气相光化学反应。气相光化学通过新型激光接口质谱(LIMS)进行研究,其中感兴趣的分子物种通过电喷雾电离引入气相,进行质量选择,然后在离子阱中进行激光光解离。在同一仪器中,在进行电喷雾电离质谱之前,由发光二极管引发在线溶液相光化学,电喷雾电离质谱再次用于监测光产物。使用这种方法研究了两种钌金属羰基化合物,[Ru(η-CH)(PPh)CO][PF] 和 [Ru(η-CH)(dppe)CO][PF](dppe = 1,2-双(二苯基膦基)乙烷)。我们表明,通过LIMS观察到的钌配合物的气相光碎片化途径([Ru(η-CH)(PPh)CO] 失去CO + PPh配体,[Ru(η-CH)(dppe)CO] 仅失去CO)反映了3.4 eV下的溶液相光化学。讨论了在单一仪器中进行气相和溶液相光化学表征的优势。

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