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采用端盖四极直流下扫技术分析四极离子阱质谱仪中的高质量荷比离子。

Analysis of high mass-to-charge ions in a quadrupole ion trap mass spectrometer via an end-cap quadrupolar direct current downscan.

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, United States.

出版信息

Anal Chem. 2012 Sep 4;84(17):7562-9. doi: 10.1021/ac301741a. Epub 2012 Aug 21.

Abstract

A method for performing mass-selective instability analysis in a three-dimensional (3-D) quadrupole ion trap is described that involves scanning a direct current (dc) voltage applied to the end-cap electrodes while holding the radio frequency (rf) potential at a fixed value. Rather than eject at the ß(z) = 1 instability line by ramping the amplitude of the drive rf potential applied to the ring electrode, as with the original mass-selective instability scan, this approach effects ion ejection along the ß(z) = 0 instability line in a process identical in principle (though it varies in its method of implementation) to the previously termed "downscan" ( Todd , J. F. J. ; Penman , A. D. ; Smith , R. D. Int. J. Mass Spectrom. Ion Processes 1991 , 106 , 117 - 135 ). A linear scan of the dc amplitude results in a nonlinear mass scale, unlike the conventional resonance ejection scan with a linear scan of the rf amplitude, and the ejection of ions in the direction of high mass-to-charge (m/z) to low m/z. However, the downscan offers some advantages over the traditional rf scan for ions of high m/z values. These include a larger scannable mass range, as well as the opportunity for improved resolution at high mass. These characteristics are demonstrated with ions of m/z 10(4)-10(5).

摘要

描述了一种在三维(3-D)四极离子阱中进行质量选择不稳定性分析的方法,该方法涉及扫描施加在端盖电极上的直流(dc)电压,同时将射频(rf)电势保持在固定值。与原始的质量选择不稳定性扫描不同,这种方法不是通过增加施加到环电极上的驱动 rf 电势的幅度来沿β(z)= 1 不稳定性线逐出离子,而是沿β(z)= 0 不稳定性线逐出离子,其原理相同(尽管其实现方法有所不同),与之前称为“downscan”的方法相同( Todd, J. F. J. ; Penman, A. D. ; Smith, R. D. Int. J. Mass Spectrom. Ion Processes 1991, 106, 117 - 135 )。与传统的通过线性扫描 rf 幅度实现的共振逐出扫描不同,dc 幅度的线性扫描会导致非线性质量标度,并且离子会沿高质量荷比(m/z)到低 m/z 的方向逐出。然而,与传统的 rf 扫描相比,downscan 对高质量的离子具有一些优势。这些优势包括更大的可扫描质量范围,以及在高质量下提高分辨率的机会。这些特性通过 m/z 为 10(4)-10(5)的离子进行了演示。

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