4.0 Article Proceedings Paper

Improved mass resolution and mass accuracy in TOF-SIMS spectra and images using argon gas cluster ion beams

Journal

BIOINTERPHASES
Volume 11, Issue 2, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1116/1.4941447

Keywords

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Funding

  1. Development of Platform Technology for Innovative Medical Measurements Program from the Korea Research Institute of Standards and Science [GP2016-0022]
  2. Pioneer Research Center Program [NRF-2012-0009541]
  3. Bio & Medical Technology Development Program [NRF-2015M3A9D7029894]
  4. Global Frontier Project of the National Research Foundation (NRF) -Ministry of Science, ICT & Future Planning [H-GUARD_2013M3A6B2078962]
  5. National Research Council of Science & Technology (NST), Republic of Korea [GP2016-0022, KGM5231611] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  6. National Research Foundation of Korea [2012-0009541, 2013M3A6B2078946, 2015M3A9D7029894] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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The popularity of argon gas cluster ion beams (Ar-GCIB) as primary ion beams in time-of-flight secondary ion mass spectrometry (TOF-SIMS) has increased because the molecular ions of large organic-and biomolecules can be detected with less damage to the sample surfaces. However, Ar-GCIB is limited by poor mass resolution as well as poor mass accuracy. The inferior quality of the mass resolution in a TOF-SIMS spectrum obtained by using Ar-GCIB compared to the one obtained by a bismuth liquid metal cluster ion beam and others makes it difficult to identify unknown peaks because of the mass interference from the neighboring peaks. However, in this study, the authors demonstrate improved mass resolution in TOF-SIMS using Ar-GCIB through the delayed extraction of secondary ions, a method typically used in TOF mass spectrometry to increase mass resolution. As for poor mass accuracy, although mass calibration using internal peaks with low mass such as hydrogen and carbon is a common approach in TOF-SIMS, it is unsuited to the present study because of the disappearance of the low-mass peaks in the delayed extraction mode. To resolve this issue, external mass calibration, another regularly used method in TOF-MS, was adapted to enhance mass accuracy in the spectrum and image generated by TOF-SIMS using Ar-GCIB in the delayed extraction mode. By producing spectra analyses of a peptide mixture and bovine serum albumin protein digested with trypsin, along with image analyses of rat brain samples, the authors demonstrate for the first time the enhancement of mass resolution and mass accuracy for the purpose of analyzing large biomolecules in TOF-SIMS using Ar-GCIB through the use of delayed extraction and external mass calibration. (C) 2016 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

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