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[ CAS No. 42957-17-5 ] {[proInfo.proName]}

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Chemical Structure| 42957-17-5
Chemical Structure| 42957-17-5
Structure of 42957-17-5 * Storage: {[proInfo.prStorage]}
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Product Details of [ 42957-17-5 ]

CAS No. :42957-17-5 MDL No. :MFCD00511280
Formula : C9H14O4 Boiling Point : -
Linear Structure Formula :- InChI Key :-
M.W : 186.21 Pubchem ID :-
Synonyms :

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Application In Synthesis of [ 42957-17-5 ]

* All experimental methods are cited from the reference, please refer to the original source for details. We do not guarantee the accuracy of the content in the reference.

  • Upstream synthesis route of [ 42957-17-5 ]
  • Downstream synthetic route of [ 42957-17-5 ]

[ 42957-17-5 ] Synthesis Path-Upstream   1~2

  • 1
  • [ 75-97-8 ]
  • [ 7664-93-9 ]
  • [ 95-92-1 ]
  • [ 42957-17-5 ]
  • [ 13395-36-3 ]
YieldReaction ConditionsOperation in experiment
56.7% and 9.5% With sodium In methanol; water EXAMPLE 1
(for comparison)
23 g of sodium are dissolved in 300 ml of absolute methanol according to the instructions in J. Am. Chem. Soc. 67, 1508 (1945).
A mixture of 1 mol of oxalic acid diethyl ester and 1 mol of pinacolin is then added dropwise to the sodium methylate solution, which is kept at room temperature by cooling, in the course of 1 hour and with exclusion of atmospheric moisture.
The mixture is stirred for a further 6 hours at room temperature and then left to stand overnight at room temperature.
An ice-cold solution of 30 g of concentrated sulphuric acid in 200 ml of water is then added to the ice-cooled reaction batch.
The mixture is stirred for 10 minutes, poured into 1 liter of water and then extracted with three 100 ml portions of benzene.
The combined benzene extracts are washed twice with 100 ml of water each time and then separated by distillation.
127 g of reactions product which, according to analysis by gas chromatography, contains 83percent by weight of pivaloylpyruvic acid methyl ester and 15percent by weight of pivaloylpyruvic acid ethyl ester are obtained.
The contents of methyl ester and ethyl ester in the 127 g amount of reaction product correspond to 56.7percent and 9.5percent of the theoretical yield.
Reference: [1] Patent: US4739104, 1988, A,
  • 2
  • [ 42957-17-5 ]
  • [ 55107-14-7 ]
Reference: [1] Journal of the American Chemical Society, 1948, vol. 70, p. 2595
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