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Presentation: 2025 ND EPSCoR Annual conference 

October 21, 2025, NDSU Memorial Union, Fargo, North Dakota

Rapid synthesis of N-methyl-N-[1-(3-pyridyl)ethyl]formamide

Zoefia Kiehl

Mojica

Undergraduate Student

Minot State University

Co-authors: Lioudmila I. Bobyleva, Professor of Chemistry, Minot State University, Mikhail M. Bobylev, Professor of Chemistry, Minot State University

Session

Poster number: 146

Nueta Room

Background: Earlier, we developed a rapid procedure for the Leuckart reaction and successfully applied it for the synthesis of a series of substituted N-methyl-(1-phenylethyl)formamides. Depending on the type of the substituent on the benzene ring of the starting acetophenone, most of the reactions were completed in 30 to 50 minutes, much faster than the traditional Leuckart reaction that is usually completed within 3 to 6 hours. Hypothesis: Acetylpyridines are close analogs of acetophenones. The nitrogen atom in the pyridine ring works similar to an electron-withdrawing substituent in the benzene ring. The electron-withdrawing action should make the adjacent carbonyl more electrophilic, resulting in a faster reaction. Consequently, the reaction time of acetylpyridines should be close to that of acetophenones with electron-withdrawing substituents. In this work the hypothesis was tested in the reaction between 3-acetylpyridine and N-methylformamide. Methods: The reaction was conducted on a 10 mmol scale at 180ºC - 184ºC. Extraction and column chromatography were used for the isolation of the product. NMR-spectroscopy and elemental analysis were used to determine the structure of the product. Results: The reaction was completed in 25 minutes. The isolated yield of N-methyl-N-[1-(3-pyridyl)ethyl]formamide was 84%. Conclusions: The results of the reaction support the initial hypothesis. The reaction time of 3-acetylpyridine was faster than the reaction time of 4-nitroacetophenone, the fastest reaction among the substituted acetophenones. N-methyl-N-[1-(3-pyridyl)ethyl]-formamide is a new compound. Support: Research presented in this presentation was supported by the National Science Foundation under NSF EPSCoR Track-1 Cooperative Agreement OIA #1946202.

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