首页> 外文期刊>Journal of mass spectrometry: JMS >Electric modeling and characterization of pulsed high-voltage nanoelectrospray ionization sources by a miniature ion trap mass spectrometer
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Electric modeling and characterization of pulsed high-voltage nanoelectrospray ionization sources by a miniature ion trap mass spectrometer

机译:微型离子阱质谱仪采用微型离子阱脉冲高压纳米电池电离源的电模拟与表征

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摘要

A better understanding of nanoelectrospray ionization (nano-ESI) would be beneficial in further improving the performances of nano-ESI. In this work, the pulsed high-voltage (HV) nano-ESI has been electrically modeled and then systematically characterized by both voltage-current and mass spectrometry measurements. First, the equivalent resistance of a nano-ESI source changes with respect to both emitter tip diameter and the HV applied. Increased voltage could improve both spray current and ionization efficiency of the pulsed HV nano-ESI. Compared with conventional DC HV method, a pulsed HV has less heating effect on the capillary tip and thus allowing the application of a much higher voltage onto a nano-ESI source. As a result, a pulsed HV nano-ESI could further boost the ionization efficiency of nano-ESI by employing even higher voltages than conventional DC nano-ESI sources.
机译:更好地理解纳米电子刷照电离(Nano-ESI)将有益进一步改善纳米ESI的性能。 在这项工作中,脉冲高压(HV)纳米ESI已经电模拟建模,然后系统地表征了电压电流和质谱测量。 首先,纳米ESI源的等效电阻相对于发射极尖端直径和施加的HV变化。 增加的电压可以提高脉冲HV纳米ESI的喷射电流和电离效率。 与传统的DC HV方法相比,脉冲HV对毛细管尖端具有较少的加热效果,从而允许将更高的电压施加到纳米ESI源上。 结果,脉冲HV纳米ESI可以通过使用比常规DC纳米ESI来源更高的电压来提高纳米ESI的电离效率。

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