Katrina Leaptrot
Katrina Leaptrot
Postdoctoral Fellow, Vanderbilt University
Verified email at vanderbilt.edu
Cited by
Cited by
Conformational ordering of biomolecules in the gas phase: nitrogen collision cross sections measured on a prototype high resolution drift tube ion mobility-mass spectrometer
JC May, CR Goodwin, NM Lareau, KL Leaptrot, CB Morris, ...
Analytical chemistry 86 (4), 2107-2116, 2014
Collision cross section compendium to annotate and predict multi-omic compound identities
JA Picache, BS Rose, A Balinski, KL Leaptrot, SD Sherrod, JC May, ...
Chemical science 10 (4), 983-993, 2019
Ion mobility conformational lipid atlas for high confidence lipidomics
KL Leaptrot, JC May, JN Dodds, JA McLean
Nature communications 10 (1), 1-9, 2019
Evaluating Separation Selectivity and Collision Cross Section Measurement Reproducibility in Helium, Nitrogen, Argon, and Carbon Dioxide Drift Gases for Drift Tube Ion Mobility …
CB Morris, JC May, KL Leaptrot, JA McLean
Journal of The American Society for Mass Spectrometry 30 (6), 1059-1068, 2019
New frontiers in lipidomics analyses using structurally selective ion mobility-mass spectrometry
RA Harris, KL Leaptrot, JC May, JA McLean
TrAC Trends in Analytical Chemistry 116, 316-323, 2019
Investigations on the Lewis-acids-catalysed electrophilic aromatic substitution reactions of thionyl chloride and selenyl chloride, the substituent effects, and the reaction …
X Sun, D Haas, S McWilliams, B Smith, K Leaptrot
Journal of Chemical Research 37 (12), 736-744, 2013
Collision Cross Section Conformational Analyses of Bile Acids via Ion Mobility–Mass Spectrometry
JC Poland, KL Leaptrot, SD Sherrod, CR Flynn, JA McLean
Journal of the American Society for Mass Spectrometry 31 (8), 1625-1631, 2020
Development of a Spatially Multiplexed Ion Mobility Spectrometer and Utilization of Ion Mobility-Mass Spectrometry for Conformational Analyses of Lipids and Other Biomolecules
KL Leaptrot
Effects of Various Ligands on Spectroscopic Properties of the Uranyl Ion
X Sun, K Leaptrot
Journal of Undergraduate Chemical Research 10 (4), 162-165, 2011
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