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Tandem Reaction Progress Analysis as a Means for Dissecting Catalytic Reactions: Application to the Aza-Piancatelli Rearrangement

Continuing developments in the elucidation techniques of complex catalytic processes is of foremost importance to modern synthetic chemistry, and the identification of efficient synthetic techniques relies on precise, reliable, and adaptable methods to dissect the mechanism of a given transformation. Currently, methods of reaction development are grounded upon the systematic modification of specific variables—such as temperature, time, concentration, etc.—to account for and control the dynamic series of coupled equilibria within a catalytic environment. On the other hand, tandem reaction analytical methods that involve the concomitant use of different instruments to probe a reaction can provide time-resolved information regarding active chemical species and facilitate the interrogation and optimization of the system. Herein, we report our study applying tandem in situ ReactIR and HPLC-MS monitoring to the dysprosium(III) triflate-catalyzed aza-Piancatelli rearrangement of 2-furylcarbinols, a reaction that...
- University of California System United States
- University of California, Merced United States
- University of California, Santa Barbara United States
- University of California, Merced United States
aza-Piancatelli rearrangement, Organic Chemistry, Chemical Engineering, 540, automated sampling, homogeneous catalysis, Inorganic Chemistry, reaction mechanisms, transient intermediate tracking, tandem reaction progress analysis, cascade rearrangement, Cancer
aza-Piancatelli rearrangement, Organic Chemistry, Chemical Engineering, 540, automated sampling, homogeneous catalysis, Inorganic Chemistry, reaction mechanisms, transient intermediate tracking, tandem reaction progress analysis, cascade rearrangement, Cancer
