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Schrader, Robert L.; Fedick, Patrick W.; Mehari, Tsdale F.; Cooks, R. Graham – Journal of Chemical Education, 2019
Typical laboratory exercises for undergraduate organic chemistry students involve bulk phase reactions with work up of product. In this study, students performed accelerated versions of the Katritzky reaction of para-substituted anilines with pyrylium salts in three ways: (i) by dropcasting reagents onto a paper surface and allowing solvent to…
Descriptors: Organic Chemistry, College Science, Undergraduate Study, Science Laboratories
Fedick, Patrick W.; Bain, Ryan M.; Bain, Kinsey; Cooks, R. Graham – Journal of Chemical Education, 2017
The goal of this laboratory exercise was for students to understand the concept of chirality and how enantiomeric excess (ee) is experimentally determined using the analysis of ibuprofen as an example. Students determined the enantiomeric excess of the analyte by three different instrumental methods: mass spectrometry, nuclear magnetic resonance…
Descriptors: Measurement Equipment, Science Equipment, Science Instruction, Chemistry
Bain, Ryan M.; Pulliam, Christopher J.; Yan, Xin; Moore, Kassandra F.; Mu¨ller, Thomas; Cooks, R. Graham – Journal of Chemical Education, 2014
Undergraduate laboratories generally teach an understanding of chemical reactivity using bulk or semimicroscale experiments with product isolation and subsequent chemical and spectroscopic analysis. In this study students were exposed to mass spectrometry as a means of chemical synthesis as well as analysis. The ionization method used, paper…
Descriptors: Science Instruction, Spectroscopy, College Science, Undergraduate Study
Bain, Ryan M.; Pulliam, Christopher J.; Raab, Shannon A.; Cooks, R. Graham – Journal of Chemical Education, 2016
In this laboratory, students perform a synthetic reaction in two ways: (i) by traditional bulk-phase reaction and (ii) in the course of reactive paper spray ionization. Mass spectrometry (MS) is used both as an analytical method and a means of accelerating organic syntheses. The main focus of this laboratory exercise is that the same ionization…
Descriptors: Undergraduate Students, Laboratory Experiments, Organic Chemistry, Hands on Science

Busch, Kenneth L.; Cooks, R. Graham – Science, 1982
Desorption ionization (DI) is used to obtain mass spectra of molecules whose vaporization by heating may lead to thermal degradation. Discusses DI techniques, characteristics of DI mass spectra, ion production, current applications of DI in mass spectroscopy, developments in DI, and prospects for future evolution of new DI techniques. (Author/JN)
Descriptors: Chemical Analysis, Chemistry, College Science, Higher Education