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α,α,δ,δ-Tetramethylvalerolactone is a cyclic ester compound with the molecular formula C9H16O2. It is characterized by its unique structure, featuring four methyl groups attached to the carbon atoms at positions α, α, δ, and δ relative to the ester functional group. This organic compound is known for its potential applications in the synthesis of various chemicals, pharmaceuticals, and fragrances. Due to its stability and reactivity, it serves as an important intermediate in organic chemistry, particularly in the preparation of complex molecules and natural products. The compound's properties, such as its boiling point, melting point, and solubility, make it a versatile building block in the creation of a wide range of chemical entities.

29619-53-2

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29619-53-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 29619-53-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,9,6,1 and 9 respectively; the second part has 2 digits, 5 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 29619-53:
(7*2)+(6*9)+(5*6)+(4*1)+(3*9)+(2*5)+(1*3)=142
142 % 10 = 2
So 29619-53-2 is a valid CAS Registry Number.

29619-53-2Downstream Products

29619-53-2Relevant academic research and scientific papers

Ketone Formation from Carboxylic Acids by Ketonic Decarboxylation: The Exceptional Case of the Tertiary Carboxylic Acids

Oliver-Tomas, Borja,Renz, Michael,Corma, Avelino

, p. 12900 - 12908 (2017)

For the reaction mechanism of the ketonic decarboxylation of two carboxylic acids, a β-keto acid is favored as key intermediate in many experimental and theoretical studies. Hydrogen atoms in the α-position are an indispensable requirement for the substrates to react by following this mechanism. However, isolated observations with tertiary carboxylic acids are not consistent with it and these are revisited and discussed herein. The experimental results obtained with pivalic acid indicate that the ketonic decarboxylation does not occur with this substrate. Instead, it is consumed in alternative reactions such as disintegration into isobutene, carbon monoxide, and water (retro-Koch reaction). In addition, the carboxylic acid is isomerized or loses carbon atoms, which converts the tertiary carboxylic acid into carboxylic acids bearing α-proton atoms. Hence, the latter are suitable to react through the β-keto acid pathway. A second substrate, 2,2,5,5-tetramethyladipic acid, reacted by following the same retro-Koch pathway. The primary product was the monocarboxylic acid 2,2,5-trimethyl-4-hexenoic acid (and its double bond isomer), which might be further transformed into a cyclic enone or a lactone. The ketonic decarboxylation product, 2,2,5,5-tetramethylcyclopentanone was observed in traces (0.2 % yield). Therefore, it can be concluded that the observed experimental results further support the proposed mechanism for the ketonic decarboxylation via the β-keto acid intermediate.

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