Unexpected molecular mechanism of trimethylsilyl bromide elimination from 2-(trimethylsilyloxy)-3-bromo-3-methyl-isoxazolidines
Author:
Funder
State Committee of Science
Publisher
Springer Science and Business Media LLC
Subject
Physical and Theoretical Chemistry
Link
http://link.springer.com/content/pdf/10.1007/s00214-019-2467-5.pdf
Reference35 articles.
1. DePuy CH, King RW (1960) Pyrolytic Cis Eliminations. Chem Rev 60:431–457
2. Gruffin RJ, Henderson A, Curtin NJ, Echalier A, Endicott JA, Hardcastle IR, Newell DR, Noble MEM, Wang LZ, Golding BT (2006) Searching for cyclin-dependent kinase inhibitors using a new variant of the cope elimination. J Am Chem Soc 128:6012–6013
3. Tschugaeff L (1900) Ueber das Thujen, ein neues bicyclisches Terpen. Berichte 33:31183126
4. Meulemans TM, Stork GA, Macaev FZ, Jansen BJM, de Groot A (1999) Total synthesis of dihydroclerodin from (R)-(−)-Carvone. J Org Chem 64:9178–9188
5. Notario R, Quijano J, Sanchez C, Velez E (2005) Theoretical study of the mechanism of thermal decomposition of carbonate esters in the gas phase. J Phys Org Chem 18:134–141
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