研究领域
Our research incorporates various aspects of bioorganic chemistry, particularly metabolism in anaerobic bacteria and tandem mass spectrometry of biologically relevant compounds, and contributes to understanding the chemical basis of microbe-host interactions and the mechanisms of collision-induced dissociations of gas-phase anions.
近期论文
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“Heterocyclic Ring Cleavage Upon Collision-Induced Dissociation of Deprotonated 3-Hydroxy-1,2,5- oxadiazoles (3-Hydroxyfurazans).” J.S. Grossert, A.C. Pippione, D. Boschi, M.L. Lolli, and R.L. White* (J. Mass Spectrom. 2015, 50, 1433-1437).
“Phenyl Group Participation in Rearrangements During Collision-Induced Dissociation of Deprotonated Phenoxyacetic Acid.” L.M. LeBlanc, A.M.J. Crowell, J.S. Grossert, and R.L. White* Rapid Commun. Mass Spectrom. 2015, 29, 2293-2301).
“Characterization of Multiple Fragmentation Pathways Initiated by Collision-induced Dissociation of Multifunctional Anions Formed by Deprotonation of 2-Nitrobenzenesulfonylglycine.” T. Tovstiga, E.A.L. Gillis, J.S. Grossert, and R.L. White* (J. Mass Spectrom., 2014, 49 168-177).
“Rearrangements Leading to Fragmentations of Hydrocinnamate and Analogous Nitrogen-containing Anions Upon Collision-induced Dissociation.” E.A.L. Gillis, J.S. Grossert, and R.L. White* (J. Am. Soc. Mass Spectrom., 2014, 25 388-397).