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Cis-2-(1-hydroxyethyl)-5-methyltetrahydrofuran is a chemical compound with the molecular formula C7H14O2. It is a cyclic ether with a hydroxyethyl group attached to the second carbon and a methyl group on the fifth carbon. cis-2-(1-hydroxyethyl)-5-methyltetrahydrofuran is a colorless liquid with a sweet, fruity odor, and it is soluble in water. It is commonly used as a flavoring agent in the food and beverage industry, particularly in the production of beverages, confectionery, and dairy products. The compound is also known for its ability to enhance the aroma of various fruits, such as apples, pears, and berries. Due to its pleasant taste and aroma, cis-2-(1-hydroxyethyl)-5-methyltetrahydrofuran is a valuable ingredient in the creation of natural and artificial flavors.

6926-04-1

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6926-04-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 6926-04-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 6,9,2 and 6 respectively; the second part has 2 digits, 0 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 6926-04:
(6*6)+(5*9)+(4*2)+(3*6)+(2*0)+(1*4)=111
111 % 10 = 1
So 6926-04-1 is a valid CAS Registry Number.

6926-04-1Upstream product

6926-04-1Downstream Products

6926-04-1Relevant academic research and scientific papers

STEREOSELECTIVE REDUCTION OF ACETALS. A METHOD FOR REDUCTIVE GENERATION OF HETEROCYCLIC RING SYSTEMS

Ishihara, Kazuaki,Mori, Atsunori,Yamamoto, Hisashi

, p. 4595 - 4612 (1990)

A new synthetic process for the construction of oxygen-containing heterocyclic systems starting from bicyclic acetals is described.We have investigated the mechanism and the stereochemical course of the reductive cleavage of acetals.

Hydrogenative metathesis of enynes via piano-stool ruthenium carbene complexes formed by alkyne gem-hydrogenation

Peil, Sebastian,Bistoni, Giovanni,Goddard, Richard,Fürstner, Alois

supporting information, p. 18541 - 18553 (2020/11/17)

The only recently discovered gem-hydrogenation of internal alkynes is a fundamentally new transformation, in which both H atoms of dihydrogen are transferred to the same C atom of a triple bond while the other position transforms into a discrete metal carbene complex. [Cp?RuCl]4 is presently the catalyst of choice: the resulting piano-stool ruthenium carbenes can engage a tethered alkene into either cyclopropanation or metathesis, and a prototypical example of such a reactive intermediate with an olefin ligated to the ruthenium center has been isolated and characterized by X-ray diffraction. It is the substitution pattern of the olefin that determines whether metathesis or cyclopropanation takes place: a systematic survey using alkenes of largely different character in combination with a computational study of the mechanism at the local coupled cluster level of theory allowed the preparative results to be sorted and an intuitive model with predictive power to be proposed. This model links the course of the reaction to the polarization of the double bond as well as to the stability of the secondary carbene complex formed, if metathesis were to take place. The first application of "hydrogenative metathesis"to the total synthesis of sinularones E and F concurred with this interpretation and allowed the proposed structure of these marine natural products to be confirmed. During this synthesis, it was found that gem-hydrogenation also provides opportunities for C-H functionalization. Moreover, silylated alkynes are shown to participate well in hydrogenative metathesis, which opens a new entry into valuable allylsilane building blocks. Crystallographic evidence suggests that the polarized [Ru-Cl] bond of the catalyst interacts with the neighboring R3Si group. Since attractive interligand Cl/R3Si contacts had already previously been invoked to explain the outcome of various ruthenium-catalyzed reactions, including trans-hydrosilylation, the experimental confirmation provided herein has implications beyond the present case.

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