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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Effects of Different Waveforms on the Performance of Active Capillary Dielectric Barrier Discharge Ionization Mass Spectrometry
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Effects of Different Waveforms on the Performance of Active Capillary Dielectric Barrier Discharge Ionization Mass Spectrometry

机译:不同波形对活性毛细管介质阻挡放电电离质谱法的影响

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Active capillary dielectric barrier discharge ionization (DBDI) is emerging as a compact, low-cost, and robust method to form intact ions of small molecules for detection in near real time by portable mass spectrometers. Here, we demonstrate that by using a 10 kHz, similar to 2.5 kV(p-p) high-voltage square-wave alternating current plasma, active capillary DBDI can consume less than 1 mu W of power. In contrast, the power consumed using a sine and triangle alternating current waveform is more than two orders of magnitude higher than that for the square waveform to obtain a similar voltage for plasma generation. Moreover, the plasma obtained using a square waveform can be significantly more homogenous than that obtained using sine and triangle waveforms. Protonated dimethyl methylphosphonate (DMMP) and deprotonated perfluorooctanoic acid (PFOA) can be detected at about the same or higher abundances using square-wave DBDI mass spectrometry compared with the use of sine and triangle waveforms. By use of benzylammonium thermometer ions, the extent of internal energy deposition using square, sine, or triangle waveform excited plasmas are essentially the same at the optimum voltages for ion detection. Using an H-bridge circuit driving a transformer optimized to reduce losses, square-wave active capillary DBDI can be continuously powered for similar to 50 h by common 9 V-battery (PP3).
机译:活性毛细管介电阻挡离子放电电离(DBDI)作为紧凑,低成本和鲁棒的方法,以形成小分子的完整离子,以通过便携式质谱仪在接近实时检测。在这里,我们证明,通过使用10kHz,类似于2.5 kV(P-P)高压方波交流等离子体,有源毛细管DBDI可以消耗小于1μW的功率。相反,使用正弦和三角形交流波形消耗的功率比对于正方形波形,从而高于两个数量级,以获得等离子体生成的类似电压。此外,使用正方形波形获得的等离子体可以比使用正弦和三角形波形获得的等离子体可以显着更均匀。与使用正弦和三角形波形相比,可以在截止方波DBDI质谱法大致相同或更高的丰度检测质子化二甲基膦酸酯(DMMP)和质子化全氟辛酸(PFOA)。通过使用苄基温度计离子,使用正方形,正弦或三角形波形激发等离子体的内部能量沉积的程度基本相同,在最佳电压下的离子检测。使用H桥电路驱动变压器优化以减少损耗,方波有源毛细管DBDI可以连续供电,通过共同的9V-电池(PP3)相似于50小时。

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