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Bio
Alex's research combined a strong desire to fully understand complex NMR phenomena with a knowledge and depth of understanding of advanced mathematical methods relevant to NMR that very few in the NMR community could match. Thus, use of Liouvillian operators, Floquet theory and sparse matrices featured prominently in his research. His Ph.D. research included elucidation of alternative relaxation pathways in heteronuclear AX2 and AX3 spin systems, knowledge that is still used today by Lewis Kay and others in designing 3D and 4D pulse sequences for protein NMR research. His Postdoctoral research included the use of Liouvillian operators to calculate NMR transitions. During his first spell at McMaster, he pioneered the use of Superspin to simulate 2D spectra. He also programmed a borrowed computer from a Nicolet FT-IR spectrometer to acquire and process 2D data on a Bruker spectrometer.
Research Interests
Papers共 172 篇Author StatisticsCo-AuthorSimilar Experts
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ENCYCLOPEDIA OF SPECTROSCOPY AND SPECTROMETRY, 3RD EDITION, VOL 1: A-Fpp.180-187, (2017)
semanticscholar(2016)
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MODERN NMR TECHNIQUES FOR SYNTHETIC CHEMISTRYpp.15-61, (2015)
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