{"id":130,"date":"2017-06-12T14:12:55","date_gmt":"2017-06-12T18:12:55","guid":{"rendered":"https:\/\/carleton.ca\/manthorpe\/?page_id=130"},"modified":"2025-03-05T19:40:20","modified_gmt":"2025-03-06T00:40:20","slug":"publications","status":"publish","type":"page","link":"https:\/\/carleton.ca\/manthorpe\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"
36. Benjamin B. Warnes, Jasmine Chihabi, Jeffrey M. Manthorpe* 35. Christian A. Rosales, Noah A. Lepinsky, Wondewassen Gebeyehu, Karl V. Wasslen, Fraser Colquhoun, Benjamin B. Warnes, Jasmine Chihabi, Jeffrey M. Manthorpe*, Jeffrey C. Smith* 34. Volodymyr Semeniuchenko, Sepideh Sharif, Neha Rana, Nalin Chandrasoma, Wilfried M. Braje, R. Tom Baker, Jeffrey M. Manthorpe, William J. Pietro, Michael G. Organ* 33. Joshua A. Roberts, Angela S. Radnoff, Aleksandra Bushueva, Jocelyn A. Menard, Karl V. Wasslen, Meaghan Harley, Jeffrey M. Manthorpe*, Jeffrey C. Smith* 32. Samuel W. J. Shields, Carlos R. Canez, Christian A. Rosales, Joshua A. Roberts, Hilary Bourgaize, Peter J. Pallister, Jeffrey M. Manthorpe*, Jeffrey C. Smith* 31. Christian A. Rosales, Krysten L. Sheedy, Karl V. Wasslen, Jeffrey M. Manthorpe*, Jeffrey C. Smith* 30. Joshua A. Roberts, Christian A. Rosales, Karl V. Wasslen, Angela S. Radnoff, Elena Godbout, Jean-Simon Diallo, Jeffrey M. Manthorpe*, Jeffrey C. Smith* 29. Christian A. Rosales, Samuel W. J. Shields, Chelsey Aulenback, Elezi Gazmend, Karl V. Wasslen, Peter Pallister, Kym Faull, Jeffrey M. Manthorpe*, Jeffrey C. Smith* 28. Volodymyr Semeniuchenko, Sepideh Sharif, Jonathan Day, Nalin Chandrasoma, William J. Pietro, Jeffrey M. Manthorpe, Wilfried M. Braje, Michael G. Organ* 27. Mathieu A. Morin, Debasis Mallik, Wenyao Zhang, William Pietro, Jeffrey M. Manthorpe, Michael G. Organ* 26. Monica A. Gill, Samuel W. J. Shields, Jeffrey M. Manthorpe* 25. Samuel W. J. Shields, Christian A. Rosales, Joshua A. Roberts, Peter Pallister, Karl V. Wasslen, Jeffrey M. Manthorpe*, and Jeffrey C. Smith* 24. Elissia T. Franklin, Samuel W. J. Shields, Jeffrey M. Manthorpe, Jeffrey C. Smith, Yu Xia, and Scott A. McLuckey* 23. Monica A. Gill and Jeffrey M. Manthorpe 22. <\/span><\/strong>Samuel W. J. Shields, Peter H. Buist, and Jeffrey M. Manthorpe* 21. Stella K. Betancourt,\u00a0Carlos R. Canez, Samuel W. J. Shields, Jeffrey M. Manthorpe, Jeffrey C. Smith, and Scott A. McLuckey* 20.<\/span><\/strong> Carlos R. Canez, Samuel W. J. Shields, Magdalena Bugno, Karl V. Wasseln, Hillary P. Weinert, William G. Willmore, Jeffrey M. Manthorpe*, and Jeffrey C. Smith* 19. <\/span><\/strong>Noof A. Alenazi, Jeffrey M. Manthorpe, Edward P. C. Lai* 18. <\/span><\/strong>Noof A. Alenazi, Jeffrey M. Manthorpe, and Edward P. C. Lai* 17.<\/span><\/strong> Karl V. Wasslen, Carlos R. Canez, Hyunmin Lee, Jeffrey M. Manthorpe*, and Jeffrey C. Smith* 16. <\/span><\/strong>Samuel W. J. Shields and Jeffrey M. Manthorpe* 15. <\/span><\/strong>Noof A. Alenazi, Edward P. C. Lai, and Jeffrey M. Manthorpe* 14. <\/span><\/strong>Karl V. Wasslen, Le Hoa Tan, Jeffrey M. Manthorpe*, and Jeffrey C. Smith* 13. <\/span><\/strong>Jeffrey M. Manthorpe*, Han Il Kong, John W. Palko, and Monica A. Gill
\n<\/strong>“Unveiling Readily Ionized and Robust Anionic Species: A Gateway to Enhanced Ionization Efficiency in ESI-MS Analysis”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2025<\/strong>, 36<\/em>, 524-533. Journal Link<\/a> or ChemRxiv Link (free\/open source preprint)<\/a><\/p>\n
\n<\/strong>“Improved LC-MS Detection of Opioids, Amphetamines, and Psychedelics Using TrEnDi”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2025<\/strong>, 36<\/em>, 514-523. Journal Link<\/a> or ChemRxiv Link (free\/open source preprint)<\/a><\/p>\n
\n<\/strong>“Experimental Evidence for Zerovalent Pd(NHC) as a Competent Catalyst in C\u2013N Cross-Coupling (NHC = DiMeIHept^Cl)
\nJournal of the American Chemical Society,<\/em> 2024<\/strong>, 146<\/em>, 29224-29236. Journal Link<\/a><\/p>\n
\n<\/strong>“Mobile Phase Contaminants Affect Neutral Lipid Analysis in LC-MS-based Lipidomics Studies”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2024<\/strong>, 35<\/em>, 3095-3106. Journal Link<\/a> or ChemRxiv Link (free\/open source preprint)<\/a><\/p>\n
\n<\/strong>“Optimized 13C-TrEnDi Enhances the Sensitivity of Plasmenyl Ether Glycerophospholipids and Demonstrates Compatibility with Other Derivatization Strategies”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2024<\/strong>, 35<\/em>, 972-981. Journal Link<\/a> or ChemRxiv Link (free\/open source preprint)<\/a><\/p>\n
\n<\/strong>“Trimethylation Enhancement Using Diazomethane (TrEnDi) Enables Enhanced Detection of Glufosinate and 3-(Methylphosphinico)propionic Acid from Complex Canola Samples”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2024<\/strong>, 35<\/em>, 140-150. Journal Link<\/a> or ChemRxiv Link (free\/open source preprint)<\/a><\/p>\n
\n<\/strong>“An In Silico Database for Automated Feature Identification of High-Resolution Tandem Mass Spectrometry 13<\/sup>C Trimethylation Enhancement Using Diazomethane (13<\/sup>C-TrEnDi)-Modified Lipid Data”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2023<\/strong>, 34<\/em>, 2722-2730. Journal Link<\/a> or ChemRxiv Link (free\/open source preprint)<\/a><\/p>\n
\n<\/strong>“Improved chromatography and MS-based detection of glyphosate and aminomethylphosphonic acid using iTrEnDi”
\nJournal of the American Society for Mass Spectrometry<\/em>, 2023<\/strong>, 34<\/em>, 948-957. Journal Link<\/a><\/p>\n
\n<\/strong>“(DiMeIHeptCl)Pd: A Low-Load Catalyst for Solvent-Free (Melt) Amination”
\nJournal of Organic Chemistry<\/em>, 2021<\/strong>, 86<\/em>, 10343-10359. LINK<\/a><\/p>\n
\n<\/strong>\u201cObtaining Kinetics from Continuous Processes: Sampling Multiple Time Point Concurrently With a Single Valve Rotation
\nChemistry\u2014Methods <\/em>(Open Access), 2021<\/strong>, 1<\/em>, 131. LINK<\/a><\/p>\n
\n<\/strong>\u201cOrigin of Protonation Side Products in Pd-Catalyzed Decarboxylative Allylation Reactions: Evidence for In Situ Modification of Triphenylphosphine Ligand\u201d
\nChemRxiv<\/em>, Feb 2021<\/strong> LINK<\/a><\/p>\n
\n<\/strong>\u201ciTrEnDi: In Situ Trimethylation Enhancement Using Diazomethane: Improved and Expanded Glycerophospholipid and Sphingolipid Analyses via a Microscale Autonomous Derivatization Platform\u201d
\nAnalytical Chemistry<\/em>, 2021<\/strong>, 93<\/em>, 1084-1091. LINK<\/a><\/p>\n
\n<\/strong>\u201cCoupling Headgroup and Alkene Specific Solution Modifications with Gas-Phase Ion\/Ion Reactions for Sensitive Glycerophospholipid Identification and Characterization\u201d
\nJournal of the American Society for Mass Spectrometry<\/em>, 2020<\/strong>, 31<\/em>, 938-945. LINK<\/a><\/p>\n
\n<\/strong>\u201cDevelopment of Palladium-Catalyzed Decarboxylative Allylation of Electron-Deficient Sulfones and Identification of Unusual Side Products\u201d
\nJournal of Organic Chemistry<\/em>, 2019<\/strong>, 84<\/em>, 6028-6039. LINK<\/a><\/p>\n
\n<\/strong><\/span>\u201cAsymmetric and Regiospecific Synthesis of Isotopically Labelled Cyclopropane Fatty Acid (9<\/span>R<\/span><\/em>,10<\/span>S<\/span><\/em>)-Dihydrosterculic Acid: Overcoming Spontaneous Protonation During Lithium-Sulfoxide Exchange\u201d
\n<\/span>SynOpen<\/em> (Open Access),\u00a02018<\/strong>, 2<\/em>, 168-175. LINK<\/a><\/span><\/p>\n
\n<\/span><\/strong>“Trimethylation Enhancement using <\/span>13<\/span>C-Diazomethane (<\/span>13<\/span>C-TrEnDi): Gas-Phase Charge Inversion of Modified Phospholipid Cations for Enhanced Structural Characterization”
\n<\/span>Analytical Chemistry <\/span><\/em>2017<\/span><\/strong>, <\/span>89<\/span><\/em>, 9452-9458. LINK<\/a><\/span><\/p>\n
\n<\/strong><\/span>\u201cTrimethylation Enhancement using <\/span>13<\/span>C-Diazomethane (<\/span>13<\/span>C-TrEnDi): Increased Sensitivity and Selectivity of Phosphatidylethanolamine, Phosphatidylcholine and Phosphatidylserine Lipids Derived from Complex Biological Samples\u201d
\n<\/span>Analytical Chemistry <\/span><\/em>2016<\/span><\/strong>, <\/span>88<\/span><\/em>, 6996-7004<\/span>. <\/span>LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cSelectivity Enhancement in Molecularly Imprinted Polymers for Chemical Sensing of Bisphenol A\u201d
\nSensors<\/em>\u00a0(Open Access)\u00a02016<\/span><\/strong>, <\/span>16<\/em>, 1697 (12 pages).<\/span> (Invited contribution to thematic issue on Molecular Imprinting for Transducers and Applications). LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cSelective Extraction of BPA in Milk Analysis by Capillary Electrophoresis using a Chemically Modified Molecularly Imprinted Polymer\u201d
\nFood Control<\/em> 2015<\/span><\/strong>, <\/span>50<\/em>, 778-783. <\/span>LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cTrimethylation Enhancement using Diazomethane (TrEnDi) II: Rapid In-Solution Concomitant Quaternization of Glycerophospholipid Amino Groups and Methylation of Phosphate Groups via Reaction with Diazomethane Significantly Enhances Sensitivity in Mass Spectrometry Analyses via a Fixed, Permanent Positive Charge\u201d
\n<\/span>Analytical Chemistry <\/span><\/em>2014<\/span><\/strong>, <\/span>86<\/span><\/em>, 9523-9532.<\/span> LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cEfficient, Scalable, and Economical Preparation of tris(Deuterium)- and <\/span>13<\/span>C-Labelled <\/span>N<\/span><\/em>-Methyl-<\/span>N<\/span><\/em>-Nitroso-<\/span>p<\/span><\/em>-Toluenesulfonamide (Diazald\u00ae) and their Conversion to Labelled Diazomethane\u201d
\n<\/span>Journal of Labelled Compounds and Radiopharmaceuticals<\/span><\/em> 2014<\/span><\/strong>, <\/span>57<\/span><\/em>, 674-679.<\/span> LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cEnhanced Selectivity of a Molecularly Imprinted Polymer toward the Target Molecule via Esterification of Non-Specific Binding Sites with Diazomethane\u201d
\nJournal of Molecular Recognition<\/em> 2014<\/span><\/strong>, <\/span>27<\/em>, 755-762. <\/span>LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cTrimethylation Enhancement using Diazomethane (TrEnDi): Rapid On-Column Quaternization of Peptide Amino Groups via Reaction with Diazomethane Significantly Enhances Sensitivity in Mass Spectrometry Analyses via a Fixed, Permanent Positive Charge\u201d
\n<\/span>Analytical Chemistry <\/span><\/em>2014<\/span><\/strong>, <\/span>86<\/span><\/em>, 3291-3299<\/span>. <\/span>LINK<\/a>
\n<\/span><\/p>\n
\n<\/strong><\/span>\u201cReduction of Sulfur\u2013Carbon Bonds and of Other Heteroatoms Bonded to Tetrahedral Carbon\u201d
\nComprehensive Organic Synthesis, 2nd Edition<\/em>;<\/span> Molander, G. A., Knochel, P., Eds; Elsevier: Oxford, 2014<\/strong>; Vol. 8<\/em>, pp 1031-1085. <\/span>LINK<\/a>