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Thermodynamic functions of activation of the alkaline hydrolysis of
ethyl benzoate and of ethyl p-nitrobenzoate in
ethanol–water mixtures of various compositions at different
temperatures
. Philip G. N. Moseley, Mustafa Ohag
, J. Chem. Soc., Perkin Trans. 2
, 1997
, 509
- Acylation. Part XXIV. The cyanide catalysed hydrolysis of esters. F. Hibbert, D. P. N. Satchell
, J. Chem. Soc. B
, 1968
, 565
- 168. The activation energy of organic reactions. Part III. The kinetics of acid hydrolysis of esters. E. W. Timm, C. N. Hinshelwood
, J. Chem. Soc.
, 1938
, 862
- Hindered ester formation by SN2 azidation of N-acetoxy-N-alkoxyamides and N-alkoxy-N-chloroamides—novel application of HERON rearrangements. Stephen A. Glover, Guoning Mo
, J. Chem. Soc., Perkin Trans. 2
, 2002
, 1728
- Direct, rapid, solvent-free conversion of unactivated esters to amides using lithium hydroxide as a catalyst. Shelli A. Miller, Nicholas E. Leadbeater
, RSC Adv.
, 2015
, 5
, 93248
- 95. Dipole moment and molecular structure. Part XVI. Configuration of ethylenic compounds. Ernst Bergmann
, J. Chem. Soc.
, 1936
, 402
- 313. Organic reactions in sulphuric acid. Part I. Ester hydrolysis. J. A. Leisten
, J. Chem. Soc.
, 1956
, 1572
- 190. Sulphonamides. Part I. The action of ammonia on sulphanilamidobenzoic esters in the light of the general theory of ester ammonolysis. John H. Gorvin
, J. Chem. Soc.
, 1945
, 732
- Organic chemistry
, J. Chem. Soc., Abstr.
, 1904
, 86
, A1
- Cobalt carbonyl as an effective CO source in one-pot synthesis of esters from aryl halides. P. Baburajan, R. Senthilkumaran, Kuppanagounder P. Elango
, New J. Chem.
, 2013
, 37
, 3050