Published January 1, 2025 | Version Supplemental material
Journal Article Open

Simultaneous observation of ²H and ¹³C enrichment of methyl phosphonic acid via Orbitrap-IRMS with applications to nerve agent forensics

  • 1. ROR icon California Institute of Technology
  • 2. ROR icon Michigan State University
  • 3. ROR icon Pacific Northwest National Laboratory
  • 4. Air Force Research Laboratory, 10 E. Saturn Blvd, Edwards Air Force Base, CA, 93524, USA.

Abstract

Quantification of the stable isotopes within a compound aids forensic investigations as it provides a fingerprint which can determine that compound's source substrates, synthetic route, and possible mechanisms of degradation. Previous stable isotope studies have explored 13C and 2H measurements of the sarin precursors methylphosphonic dichloride (DC) and methylphosphonic difluoride (DF) as forensic signatures. However, these measurements required different sample preparations and measurement techniques. Orbitrap isotope ratio mass spectrometry (Orbitrap-IRMS) is a developing technique which can characterize multiple stable isotopes simultaneously. Here, we apply Orbitrap-IRMS to simultaneously observe the 13C and 2H content of methylphosphonic acid (MPA), the hydrolysis product of DC and DF, which can be used as a proxy for the isotopic content of DC and DF. Our method requires 20 min analyses and consumes ≈60 nmol of sample, with precisions of ≈0.9 ‰ (13C) and ≈3.6 ‰ (2H). We apply our method to both commercially acquired MPA and MPA obtained from the hydrolysis of commercially acquired DC. We validate our methods via comparison to elemental-analyzer isotope ratio mass spectrometry (EA-IRMS). The combined 13C and 2H measurement creates a more robust forensic tool than either isotope individually. Our results demonstrate the viability of Orbitrap-IRMS for chemical forensic measurements.

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Acknowledgement

We would like to thank Alex Sessions for the use of laboratory space. A special thanks to Hannah Dion-Kirschner, as well as Fenfang Wu and Elliott Mueller, for their assistance with 13C EA-IRMS measurements. We thank Viorel Atudorei for assistance with 2H EA-IRMS measurements, and Nils Kuhlbusch for discussion regarding the low-resolution dataset. We also thank Sarah Zeichner, Max Lloyd, Peter Martin, and Guannan Dong for development of data processing scripts. Finally, we thank three anonymous individuals for their review of the manuscript.

Data Availability

Orbitrap-IRMS data and data processing code are available at repositories specified in the manuscript. Additional data is available upon request.

Supplemental Material

Supplementary data (DOCX)

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Additional details

Identifiers

Funding

United States Department of Energy
DE-SC0016561

Dates

Submitted
2024-02-03
Accepted
2024-08-31
Available
2024-09-05
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