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Effective Temperature of Ions in Traveling Wave Ion Mobility Spectrometry

机译:行波离子迁移谱中离子的有效温度

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Traveling wave ion mobility spectrometers (TW IMS) operate at significantly higher fields than drift tube ion mobility spectrometers. Here we measured the fragmentation of the fragile p-methoxybenzylpyridinium ion inside the TW ion mobility cell of the first-generation SYNAPT HDMS spectrometer. The ion's vibrational internal energy was quantified by a vibrational effective temperature T_(eff,vib), which is the mean temperature of the ions inside the cell that would result in the same fragmentation yield as observed experimentally. Significant fragmentation of the probe ion inside the TW IMS cell was detected, indicating that field heating of the ions takes place in TW IMS. For typical small molecule IMS conditions, T_(eff,vib) velence 555 +- 2 K. The variations of the effective temperature were studied as a function of the IMS parameters, and we found that T_(eff,vib) decreases when the wave height decreases, when the pressure increases, or when the wave speed increases. The energy transfer efficiency of argon is higher than for He, N_(2), or CO_(2). With T_(eff,vib) being directly related to the ion speed inside the TW IMS, our results also provide new insight on the ion movement in TW IMS. We also discuss the influence of field heating of ions for calibration and structural studies in TW IMS.
机译:行波离子迁移率光谱仪(TW IMS)的工作范围比漂移管离子迁移率光谱仪高得多。在这里,我们测量了第一代SYNAPT HDMS光谱仪的TW离子迁移池中易碎的对甲氧基苄基吡啶离子的碎片。离子的振动内部能量由振动有效温度T_(eff,vib)量化,该温度是细胞内部离子的平均温度,该温度将导致与实验观察到的碎片产生率相同。检测到TW IMS池内探针离子的显着碎裂,表明在TW IMS中发生了离子的场加热。对于典型的小分子IMS条件,T_(eff,vib)速度555 +-2K。研究了有效温度的变化与IMS参数的关系,我们发现当波动时T_(eff,vib)减小当压力增加或波速增加时,高度减小。氩气的能量传输效率高于He,N_(2)或CO_(2)。由于T_(eff,vib)与TW IMS中的离子速度直接相关,因此我们的结果也为TW IMS中的离子运动提供了新的见解。我们还将讨论离子场加热对TW IMS中标定和结构研究的影响。

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