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Wenyu Lai; Baolin Li – Journal of Chemical Education, 2025
Paal--Knorr reactions are a classical method for synthesizing pyrroles, using 1,4-dicarbonyl compound and amine as reactants. It has the characteristics of green chemistry, as only two molecules of water are lost. In this teaching and learning experiment, 2,5-hexanedione and 4-"tert"-butylaniline were used to synthesize…
Descriptors: Organic Chemistry, College Science, Environmental Education, Science Curriculum
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Tsun Hei Yu; Pin-Yuan Lian; Jhih-Yu Lin; Li-Yu Chou; Yan-Ru Chen; Chia-Chi Huang – Journal of Chemical Education, 2024
As a model study for improving undergraduate organic chemistry laboratories with contemporary research concepts and practices, we evaluated a project module aiming at the synthesis of two porphyrin compounds. The module was implemented in a format that differed in several ways from that of a traditional course. It was designed for small student…
Descriptors: Organic Chemistry, Science Instruction, Science Laboratories, Instructional Improvement
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Bur, Scott K.; Pomerantz, William C. K.; Bade, Morgan L.; Gee, Clifford T. – Journal of Chemical Education, 2021
Curriculum-based undergraduate research experiences (CUREs) have been shown to increase student retention in STEM fields and are starting to become more widely adopted in chemistry curricula. Here we describe a 10-week CURE that is suitable for a second-semester organic chemistry laboratory course. Students synthesize small molecules and use…
Descriptors: Organic Chemistry, College Science, Undergraduate Students, Scientific Research
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Cruz, Cole L.; Holmberg-Douglas, Natalie; Onuska, Nicholas P. R.; McManus, Joshua B.; MacKenzie, Ian A.; Hutson, Bryant L.; Eskew, Nita A.; Nicewicz, David A. – Journal of Chemical Education, 2020
Despite the recognized effectiveness of course-based undergraduate research experiences (CUREs), there are few examples of the development of a CURE-based course in a large-enrollment undergraduate organic chemistry laboratory. Herein, we describe the development and implementation of a series of undergraduate laboratory experiments centered…
Descriptors: Science Curriculum, Curriculum Development, Organic Chemistry, Science Laboratories
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Fonseca, Custódia S. C. – Journal of Chemical Education, 2017
Sigmatropic rearrangement is one of the main classes of pericyclic reactions, which does not necessarily mean that these rearrangements have a pericyclic mechanism. The allylic saccharin derivative O-cinnamylsaccharin can isomerize into N-cinnamylsaccharin in the polar solvent system toluene/triethylamine in a reaction time of 2 h at 110°C. The…
Descriptors: Synthesis, Chemistry, Organic Chemistry, Laboratory Experiments
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Hare, Stephanie R.; Tantillo, Dean J. – Journal of Chemical Education, 2017
When new concepts, models, or theories are introduced in a course, their presentation should be accurate, even if depth is not the goal. In a recent publication in this Journal, the Woodward-Hoffmann rules were invoked in the context of a new laboratory experiment, but the associated description was inaccurate. Here we aim to clarify the…
Descriptors: Chemistry, Organic Chemistry, Laboratory Experiments, Science Instruction
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Russell, Cianán B.; Mason, Jeremy D.; Bean, Theodore G.; Murphree, S. Shaun – Journal of Chemical Education, 2014
An instructional laboratory curriculum for a first-semester introductory organic chemistry course has been developed using microwave-assisted organic synthesis (MAOS). Taking advantage of short reaction times, materials were developed to facilitate collaborative experimental design, analysis, and debriefing of results during the normal laboratory…
Descriptors: Introductory Courses, Organic Chemistry, Science Laboratories, Laboratory Experiments
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Boltax, Ariana L.; Armanious, Stephanie; Kosinski-Collins, Melissa S.; Pontrello, Jason K. – Biochemistry and Molecular Biology Education, 2015
Modern research often requires collaboration of experts in fields, such as math, chemistry, biology, physics, and computer science to develop unique solutions to common problems. Traditional introductory undergraduate laboratory curricula in the sciences often do not emphasize connections possible between the various disciplines. We designed an…
Descriptors: Biology, Organic Chemistry, Interdisciplinary Approach, Introductory Courses
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Pohl, Nicola; Schwarz, Kimberly – Journal of Chemical Education, 2008
We describe an experiment for the undergraduate organic laboratory curriculum in which 2-bromoacetophenone is converted to 2-fluoroacetophenone using a solid-phase nucleophilic fluorine source. The experiment introduces students to the utility of solid-phase reagents in organic synthesis, to NMR-active nuclei other than [to the first power]H…
Descriptors: Organic Chemistry, Experiments, College Science, Undergraduate Students
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Shaw, Roosevelt; Severin, Ashika; Balfour, Miguel; Nettles, Columbus – Journal of Chemical Education, 2005
Two Diels-Alder reactions are described that are suitable for a MORE (microwave-induced organic reaction enhanced) experiment in the organic chemistry laboratory course. A second experiment in which the splitting patterns of the vinyl protons in the nuclear magnetic resonance (NMR) spectra of two MORE adducts are used in conjunction with molecular…
Descriptors: Organic Chemistry, Science Experiments, Spectroscopy, Molecular Structure
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McKenzie, Lallie C.; Huffman, Lauren M.; Hutchison, James E. – Journal of Chemical Education, 2005
The use of green metrics to compare three bromination laboratory procedures demonstrates the effectiveness of an incremental greening process for chemistry curricula. Due to this process, the bromination of alkenes can be introduced to students through the use of a safe, effective, modern practice.
Descriptors: Laboratory Procedures, Laboratory Experiments, Organic Chemistry, Science Laboratories
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Horowitz, Gail – Journal of Chemical Education, 2004
Conformational analysis of cyclohexanes is a fundamental, requisite topic covered in undergraduate organic chemistry. A molecular modeling experiment is designed with the view of extending students' boundaries of knowledge about cyclohexane conformational stabilities.
Descriptors: Organic Chemistry, Science Curriculum, Undergraduate Study, Science Experiments
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Navarro, Daniela Maria do Amaral Ferraz; Navarro, Marcelo – Journal of Chemical Education, 2004
An experiment developed for an undergraduate organic chemistry laboratory course that can be used to introduce the catalytic hydrogenation reaction, catalysis electrochemical principles and gas chromatography is presented. The organic compounds hydrogenated by the electrocatalytic hydrogenation (ECH) process were styrene, benzaldehyde and…
Descriptors: Organic Chemistry, Science Experiments, Undergraduate Students, Science Curriculum
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Woodworth, Jennifer K.; Terrance, Jacob C.; Hoffmann, Markus M. – Journal of Chemical Education, 2006
A laboratory experiment is presented for the upper-level undergraduate physical chemistry curriculum in which the ternary phase diagram of water, 1-propanol and n-heptane is measured using proton nuclear magnetic resonance (NMR) spectroscopy. The experiment builds upon basic concepts of NMR spectral analysis, typically taught in the undergraduate…
Descriptors: Spectroscopy, Thermodynamics, Organic Chemistry, Laboratory Experiments
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Mahan, Eric J.; Nading, Mary Alice – Journal of Chemical Education, 2006
This experiment was designed to help students improve the critical thinking skills that are required to analyze and discuss the results of an organic chemistry experiment in an effective manner. The initial objective indicated in the prelab handout for this puzzle experiment was the synthesis of methyl 4-bromobenzoate using the Fischer…
Descriptors: Organic Chemistry, Laboratory Manuals, Reference Materials, Critical Thinking
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