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使用Timepix探测器在正交飞行时间质谱中检测天然多电荷高质量单离子时微通道板探测器响应的表征。

Characterization of microchannel plate detector response for the detection of native multiply charged high mass single ions in orthogonal-time-of-flight mass spectrometry using a Timepix detector.

作者信息

Mathew Anjusha, Eijkel Gert B, Anthony Ian G M, Ellis Shane R, Heeren Ron M A

机构信息

Maastricht MultiModal Molecular Imaging (M4i) Institute, Division of Imaging Mass Spectrometry (IMS), Maastricht University, Maastricht, The Netherlands.

Molecular Horizons and School of Chemistry and Molecular Bioscience, University of Wollongong, Wollongong, NSW, Australia.

出版信息

J Mass Spectrom. 2022 Apr;57(4):e4820. doi: 10.1002/jms.4820.

Abstract

Time-of-flight (TOF) systems are one of the most widely used mass analyzers in native mass spectrometry (nMS) for the analysis of non-covalent multiply charged bio-macromolecular assemblies (MMAs). Typically, microchannel plates (MCPs) are employed for high mass native ion detection in TOF MS. MCPs are well known for their reduced detection efficiency when impinged by large slow moving ions. Here, a position- and time-sensitive Timepix (TPX) detector has been added to the back of a dual MCP stack to study the key factors that affect MCP performance for MMA ions generated by nMS. The footprint size of the secondary electron cloud generated by the MCP on the TPX for each individual ion event is analyzed as a measure of MCP performance at each mass-to-charge (m/z) value and resulted in a Poisson distribution. This allowed us to investigate the dependency of ion mass, ion charge, ion velocity, acceleration voltage, and MCP bias voltage on MCP response in the high mass low velocity regime. The study of measurement ranges; ion mass = 195 to 802,000 Da, ion velocity = 8.4 to 67.4 km/s, and ion charge = 1+ to 72+, extended the previously examined mass range and characterized MCP performance for multiply charged species. We derived a MCP performance equation based on two independent ion properties, ion mass and charge, from these results, which enables rapid MCP tuning for single MMA ion detection.

摘要

飞行时间(TOF)系统是基质辅助激光解吸电离飞行时间质谱(nMS)中最广泛使用的质量分析器之一,用于分析非共价多电荷生物大分子聚集体(MMA)。通常,微通道板(MCP)用于TOF MS中的高质量原生离子检测。众所周知,当受到大的慢速移动离子撞击时,MCP的检测效率会降低。在此,在双MCP堆栈的背面添加了一个位置和时间敏感的Timepix(TPX)探测器,以研究影响nMS产生的MMA离子的MCP性能的关键因素。分析每个单独离子事件中MCP在TPX上产生的二次电子云的足迹大小,作为每个质荷比(m/z)值下MCP性能的度量,并得到泊松分布。这使我们能够研究在高质量低速区域中离子质量、离子电荷、离子速度、加速电压和MCP偏置电压对MCP响应的依赖性。对测量范围的研究;离子质量 = 195至802,000 Da,离子速度 = 8.4至67.4 km/s,离子电荷 = 1+至72+,扩展了先前检查的质量范围,并表征了多电荷物种的MCP性能。我们从这些结果中推导出了一个基于两个独立离子特性(离子质量和电荷)的MCP性能方程,该方程能够对单个MMA离子检测进行快速MCP调谐。

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