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3-(4-Methoxy-phenyl)-2-butanol is an organic compound with the molecular formula C11H16O2. It is a colorless liquid with a distinct floral scent, often used in the fragrance industry to create perfumes and other scented products. 3-(4-Methoxy-phenyl)-2-butanol is characterized by a 2-butanol backbone, with a 4-methoxy-phenyl group attached at the 3-position. The presence of the methoxy group provides a mild, sweet aroma, while the phenyl ring contributes to the overall floral character. It is synthesized through various chemical reactions and is known for its stability and low toxicity, making it a popular choice in the creation of natural and synthetic fragrances.

104174-19-8

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104174-19-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 104174-19-8 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,0,4,1,7 and 4 respectively; the second part has 2 digits, 1 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 104174-19:
(8*1)+(7*0)+(6*4)+(5*1)+(4*7)+(3*4)+(2*1)+(1*9)=88
88 % 10 = 8
So 104174-19-8 is a valid CAS Registry Number.

104174-19-8Relevant academic research and scientific papers

Dynamic Reductive Kinetic Resolution of Benzyl Ketones using Alcohol Dehydrogenases and Anion Exchange Resins

Méndez-Sánchez, Daniel,Mangas-Sánchez, Juan,Busto, Eduardo,Gotor, Vicente,Gotor-Fernández, Vicente

, p. 122 - 131 (2016/01/25)

Dynamic reductive kinetic resolutions of racemic 3-arylalkanones have been performed by the proper combination of an alcohol dehydrogenase and a basic anionic resin. The best results were found for the bioreduction with the alcohol dehydrogenase type A from Rhodococcus ruber DSM 44541 overexpressed in Escherichia coli (E. coli/ADH-A) and the commercially available evo-1.1.200, while the Amberlite IRA-440 C and the DOWEX-MWA-1 resins allowed efficient in situ racemizations. Reaction conditions were optimized in terms of enzyme source and loading, type and amount of resin, pH, temperature and reaction times, obtaining a series of (R,R)-substituted propan-2-ols with good conversions and both diastereoselectivity and stereoselectivity. As a proof of concept, the subsequent intramolecular cyclization of a selected propan-2-ol substrate afforded a valuable isochroman heterocycle without any loss of the optical purity.

Dynamic kinetic asymmetric amination of alcohols: From a mixture of four isomers to diastereo- and enantiopure α-branched amines

Rong, Zi-Qiang,Zhang, Yao,Chua, Raymond Hong Bing,Pan, Hui-Jie,Zhao, Yu

supporting information, p. 4944 - 4947 (2015/05/05)

The first dynamic kinetic asymmetric amination of alcohols via borrowing hydrogen methodology is presented. Under the cooperative catalysis by an iridium complex and a chiral phosphoric acid, α-branched alcohols that exist as a mixture of four isomers undergo racemization by two orthogonal mechanisms and are converted to diastereo- and enantiopure amines bearing adjacent stereocenters. The preparation of diastereo- and enantiopure 1,2-amino alcohols is also realized using this catalytic system.

Reactions of 4-Substituted-2'-Halogenoacetophenones with Grignard Reagents

Crombie, Leslie,Hardy, Robert,Knight, David W.

, p. 1373 - 1380 (2007/10/02)

The initial reaction of 4-substituted 2'-halogenoacetophenones with an excess of methyl Grignard reagent is shown to be an attack at the 1'-carbonyl to form a halohydrin salt.The various reactions which then follow are substituent dependent.In the 4-hydroxy case the only product is 1-(4-hydroxyphenyl)-2-methylpropan-2-ol (13) which arises via a -aryl shift with simultaneous elimination of magnesium halide.When the substituent is 4-methoxy, a second pathway becomes important involving epoxide formation and a subsequent -hydride migration to the benzylic position, or attack of the Grignard reagent at the benzylic carbon of the epoxide.When the substituent is 4-bromo, the reaction proceeds exclusively via the epoxide and, following a -hydride shift, leads to the isomeric butanols (33) and (34).The reasons underlying such diversity of reactivity are discussed.

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