Department of Chemistry, University of Toronto, ON, Canada.
Phys Chem Chem Phys. 2010 Mar 20;12(11):2590-8. doi: 10.1039/b921076h. Epub 2010 Jan 27.
A flexible interface to perform optical spectroscopic measurements on gaseous ions stored in a modified commercial quadrupole ion trap (QIT) mass spectrometer is described. The modifications made to the mass spectrometer did not adversely affect its operating characteristics. Gas-phase ions are produced using electrospray ionization, mass isolated and stored in the trapping mass spectrometer. The ions are subsequently irradiated with visible light from a tunable laser and dispersed fluorescence spectra are recorded simultaneously. Mass spectra are recorded after the irradiation period. This set-up allows us to track a range of possible outcomes upon photoexcitation of selected ions including fluorescence, photofragmentation and photodetachment of electrons. The experimental set-up is characterized using rhodamine 590, which is a methyl ester variant of rhodamine 6G. Fluorescence excitation and emission spectra of gaseous rhodamine 590 are measured and compared with solution-phase spectra. Excitation and emission maxima for the gaseous ions are found to lie at higher energy than for the solvated rhodamine 590. In addition, the gas-phase Stokes shift is significantly smaller than the solution-phase Stokes shift. The effects of several experimental parameters on the observed fluorescence signal are investigated, including laser power, relative number of ions, q(z) trapping parameter and buffer gas pressure. In addition to its use for the photophysical characterization of the intrinsic properties of ionic chromophores, this set-up may be used to investigate the properties of mass-selected, dye-labeled biomolecules, both alone and in well-defined complexes and clusters.
一种灵活的接口,用于对存储在经过改进的商用四极离子阱(QIT)质谱仪中的气态离子进行光学光谱测量。对质谱仪的修改并未对其运行特性产生不利影响。使用电喷雾电离产生气相离子,在捕集质谱仪中对其进行质量隔离和存储。然后用可调谐激光对离子进行辐照,并同时记录荧光发射光谱。辐照后记录质谱。该装置使我们能够跟踪选定离子光激发后的一系列可能结果,包括荧光、光碎裂和电子光离解。使用罗丹明 590 对实验装置进行了表征,罗丹明 590 是罗丹明 6G 的甲酯变体。测量了气态罗丹明 590 的荧光激发和发射光谱,并将其与溶液相光谱进行了比较。气态离子的激发和发射最大值位于比溶剂化罗丹明 590 更高的能量处。此外,气相斯托克斯位移明显小于溶液相斯托克斯位移。研究了几个实验参数对观察到的荧光信号的影响,包括激光功率、离子相对数量、q(z)捕获参数和缓冲气体压力。除了用于离子发色团固有性质的光物理特性研究外,该装置还可用于研究单独和在明确定义的复合物和团簇中标记染料的质谱选择的生物分子的性质。