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Experimental and Theoretical Exploration of the Kinetics and Thermodynamics of the Nucleophile-Induced Fragmentation of Ylidenenorbornadiene Carboxylates.
Richardson, Abigail D; L'Heureux, Scott J; Henry, Ava M; McDonough, Elizabeth A; Fleischer, Cameron J; McMullen, Cameron C; Reynafarje, Trevor R; Guerrero, Gisele P; Williams, Quinn E; Zhou, Qingyang; Malouf, David M; Thurman, Spencer E; Soeller, Julia E; Sheng, Jerry Y; Medhurst, Erica A; Canales, Angel E; Cecil, Ty B; Houk, K N; Costanzo, Philip J; Bercovici, Daniel A.
Afiliação
  • Richardson AD; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • L'Heureux SJ; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Henry AM; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • McDonough EA; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Fleischer CJ; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • McMullen CC; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Reynafarje TR; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Guerrero GP; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Williams QE; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Zhou Q; Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, California 90095, United States.
  • Malouf DM; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Thurman SE; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Soeller JE; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Sheng JY; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Medhurst EA; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Canales AE; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Cecil TB; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Houk KN; Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, California 90095, United States.
  • Costanzo PJ; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
  • Bercovici DA; Department of Chemistry and Biochemistry, California Polytechnic State University, San Luis Obispo, California 93407, United States.
J Org Chem ; 88(16): 11683-11693, 2023 Aug 18.
Article em En | MEDLINE | ID: mdl-37535477
Ylidenenorbornadienes (YNDs), prepared by [4 + 2] cycloadditions between fulvenes and acetylene carboxylates, react with thiol nucleophiles to yield mixtures of four to eight diastereomers depending on the symmetry of the YND substrate. The mixtures of diastereomers fragment via a retro-[4 + 2] cycloaddition with a large variation in rate, with half-lives ranging from 16 to 11,000 min at 80 °C. The diastereomer-enriched samples of propane thiol adducts [YND-propanethiol (PTs)] were isolated and identified by nuclear Overhauser effect spectroscopy (NOESY) correlations. Simulated kinetics were used to extrapolate the rate constants of individual diastereomers from the observed rate data, and it correlated well with rate constants measured directly and from isolated diastereomer-enriched samples. The individual diastereomers of a model system fragment at differing rates with half-lives ranging from 5 to 44 min in CDCl3. Density functional theory calculations were performed to investigate the mechanism of fragmentation and support an asynchronous retro-[4 + 2] cycloaddition transition state. The computations generally correlated well with the observed free energies of activation for four diastereomers of the model system as a whole, within 2.6 kcal/mol. However, the observed order of the fragmentation rates across the set of diastereomers deviated from the computational results. YNDs display wide variability in the rate of fragmentation, dependent on the stereoelectronics of the ylidene substituents. A Hammett study showed that the electron-rich aromatic rings attached to the ylidene bridge increase the fragmentation rate, while electron-deficient systems slow fragmentation rates.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: J Org Chem Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: J Org Chem Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos