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Atom Probe Tomography of Small-Molecule Organic Materials

Published online by Cambridge University Press:  30 July 2021

Jeramy Zimmerman
Affiliation:
Colorado School of Mines, Physics, GOLDEN, Colorado, United States
Andrew Proudian
Affiliation:
Colorado School of Mines, Physics, Golden, Colorado, United States
Matthew Jaskot
Affiliation:
Colorado School of Mines, GOLDEN, Colorado, United States
Paul Niyonkuru
Affiliation:
Colorado School of Mines, Golden, Colorado, United States
Roland Bennett
Affiliation:
Colorado School of Mines, GOLDEN, Colorado, United States
Jacob Bingham
Affiliation:
Colorado School of Mines, United States
Shubham Vyas
Affiliation:
Colorado School of Mines, United States

Abstract

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Type
Advanced Application of Atom Probe Tomography: Specimen preparation, Instrumentation, and Data analysis
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the Microscopy Society of America

References

Proudian, A.P., Jaskot, M.B., Lyiza, C., Diercks, D. R., Gorman, B.P., and Zimmerman, J.D., Effect of Diels−Alder Reaction in C60-Tetracene Photovoltaic Devices, NanoLetters 16, 6086-6091 (2016)Google ScholarPubMed
Proudian, A.P., Jaskot, M.B., Diercks, D.R., Gorman, B.P., Zimmerman, J.D., Atom Probe Tomography of Molecular Organic Materials: Sub-Dalton Nanometer-Scale Quantification, Chemistry of Materials 31, 2241-2247 (2019).CrossRefGoogle Scholar
Data analyzed in this presentation is performed using our R for Atom Probe Tomography (rapt) analysis package: A.P. Proudian, rapt: R for atom probe tomography, https://github.com/aproudian2/rapt. (2020)Google Scholar
Saxey, D. W. Correlated ion analysis and the interpretation of atom probe mass spectra. Ultramicroscopy 111, 473479 (2011)CrossRefGoogle ScholarPubMed
This work was supported in part by grant DE-SC0018021 funded by the U.S. Department of Energy, Office of Science Early Career program.Google Scholar