Advances in the Design and Functionality of a Compact Multi‐Reflecting Time‐of‐Flight Mass Spectrometer

RATIONALE: High-resolution mass spectrometry is routinely used for the analysis of complex samples in pharmaceutical, environmental, and omics related studies. Such applications demand instrumentation to be capable of combining sub-ppm mass accuracy, high resolving power, rapid full m/z range acquisition over a wide dynamic range. METHODS: Achieving the above requirements places constraints on analyzer design and performance. Multi-reflecting time-of-flight (MRT) based analyzers have previously been reported as a means of significantly extending the effective flight path in compact TOF designs. Here, further instrument and functionality advances in a compact MRT mass spectrometer design are described. RESULTS: The impact of these enhancements was assessed for targeted and non-targeted omics applications, examining the impact of acquisition speed on resolving power, dynamic range including limits of quantitation, and quantitative precision. CONCLUSION: The results obtained characterize the performance of the enhanced design features of a compact MRT mass spectrometer. Operation at elevated acquisition rates up to 200 Hz was observed without loss in resolving power, isotopic ratio accuracy or quantitative precision.

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Publication Details

Journal
Rapid Communications in Mass Spectrometry
Published
2026-09-09
DOI
https://doi.org/10.1002/rcm.70173
Primary Topic
Mass Spectrometry Techniques and Applications
Type
article
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article

Advances in the Design and Functionality of a Compact Multi‐Reflecting Time‐of‐Flight Mass Spectrometer

Lee A. Gethings, Johannes P.C. Vissers, James Langridge, Samantha Ferries et al.
Rapid Communications in Mass Spectrometry
Mass Spectrometry Techniques and Applications
article

Advances in the Design and Functionality of a Compact Multi‐Reflecting Time‐of‐Flight Mass Spectrometer

Lee A. Gethings, Johannes P.C. Vissers, James Langridge, Samantha Ferries, Martin Palmer, Richard Lock, Matthew Daly, Jason Wildgoose
article en

Abstract

RATIONALE: High-resolution mass spectrometry is routinely used for the analysis of complex samples in pharmaceutical, environmental, and omics related studies. Such applications demand instrumentation to be capable of combining sub-ppm mass accuracy, high resolving power, rapid full m/z range acquisition over a wide dynamic range. METHODS: Achieving the above requirements places constraints on analyzer design and performance. Multi-reflecting time-of-flight (MRT) based analyzers have previously been reported as a means of significantly extending the effective flight path in compact TOF designs. Here, further instrument and functionality advances in a compact MRT mass spectrometer design are described. RESULTS: The impact of these enhancements was assessed for targeted and non-targeted omics applications, examining the impact of acquisition speed on resolving power, dynamic range including limits of quantitation, and quantitative precision. CONCLUSION: The results obtained characterize the performance of the enhanced design features of a compact MRT mass spectrometer. Operation at elevated acquisition rates up to 200 Hz was observed without loss in resolving power, isotopic ratio accuracy or quantitative precision.

Rapid Communications in Mass SpectrometryVol. 40(22)
Waters (United Kingdom) (GB)
Openalex Percentile: Top 52%
Mass Spectrometry Techniques and Applications
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Advances in the Design and Functionality of a Compact Multi‐Reflecting Time‐of‐Flight Mass Spectrometer — Lee A. Gethings, Johannes P.C. Vissers, et al. · Rapid Communications in Mass Spectrometry (2026) | TGRS Research Map | TGRS