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Distinguishing Meteoritic Nanodiamonds from Amorphous Carbon Using Atom-probe Tomography

Published online by Cambridge University Press:  04 August 2017

J. B. Lewis
Affiliation:
Laboratory for Space Sciences, Physics Department, Washington University, St. Louis, MO, USA
D. Isheim
Affiliation:
Northwestern University Center for Atom-Probe Tomography (NUCAPT) and Department of Materials Science and Engineering, Northwestern University, Evanston, IL, USA
C. Floss
Affiliation:
Laboratory for Space Sciences, Physics Department, Washington University, St. Louis, MO, USA
D. N. Seidman
Affiliation:
Northwestern University Center for Atom-Probe Tomography (NUCAPT) and Department of Materials Science and Engineering, Northwestern University, Evanston, IL, USA

Abstract

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Type
Abstract
Copyright
© Microscopy Society of America 2017 

References

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[4] Heck, PR, et al 41st Lunar and Planetary Science Conference (2010), Abstract #2112.Google Scholar
[5] Isheim, D, et al, Microsc. Microanal 19(Suppl 2 2013). pp. 974975.Google Scholar
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[7] Lewis, JB, et al 46th Lunar and Planetary Science Conference (2015), Abstract #1480.Google Scholar
[8] Lewis, JB, et al 48th Lunar and Planetary Science Conference (2017), Abstract #2555.Google Scholar
[9] This work is supported by NASA grants NNX14AP15H (J.B.L.) and NNX16AD26G (C.F.). The LEAP tomograph at NUCAPT was acquired and upgraded with NSF DMR-0420532 and ONR-DURIP N00014-0400798, N00014-0610539, N00014-0910781 equipment grants. NUCAPT received support from the MRSEC program (NSF DMR-1121262) at the Materials Research Center, the SHyNE Resource (NSF NNCI-1542205), and the Initiative for Sustainability and Energy at Northwestern (ISEN)).Google Scholar