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Using asymmetrical bipolar mode ion shutter to reduce induced voltage pulse in FT-IMS

机译:使用非对称双极模式离子快门降低FT-IMS中的感应电压脉冲

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摘要

Fourier transform ion mobility spectrometer (Fr-IMS) works with high efficiency in ion utilization, whose two ion shutters switch simultaneously in a binary mode. When it works, an induced voltage surge is generated and detected by the electrometer during the voltage jump, which may badly decrease the quality of the ion signal detection. As the second ion shutter of FT-IMS is very close to the Faraday plate (less than 1 cm), the induced voltage surge gets so severe that it may even disguise the real ion signal. In this paper, the mechanism of production of the induced impulse is studied by simulation, and we developed an adjustable bipolar ion shutter driver to reduce the intensity of the induced impulse. The amplitude of square-wave voltage on each grid is adjustable, to decrease the errors caused by factors such as fix-errors of the BNG and the electromagnetic radiation difference of the two non-coplanar grids of TPG. In the experiment, the induced voltage surge decreases 77% comparing with the commonly used symmetrical drive mode. An FT-IMS spectra of 10 ppm of acetone is achieved with the new ion shutter driver. (C) 2016 Elsevier B.V. All rights reserved.
机译:傅里叶变换离子迁移谱仪(Fr-IMS)在离子利用方面效率很高,其两个离子快门同时以二进制模式切换。当其工作时,感应电压浪涌会在电压跃迁期间由静电计生成并检测,这可能会严重降低离子信号检测的质量。由于FT-IMS的第二个离子快门非常接近法拉第平板(小于1厘米),因此感应电压浪涌变得非常严重,甚至可能掩盖真实的离子信号。本文通过仿真研究了产生感应脉冲的机理,并开发了可调节的双极离子快门驱动器来减小感应脉冲的强度。每个栅格上的方波电压的幅度是可调的,以减少由BNG的固定误差和TPG的两个非共面栅格的电磁辐射差异等因素引起的误差。在实验中,感应电压浪涌与常用的对称驱动模式相比降低了77%。新型离子快门驱动器可实现10 ppm丙酮的FT-IMS光谱。 (C)2016 Elsevier B.V.保留所有权利。

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