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(Z)-3,4-diphenylbut-3-en-2-ol is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

131437-38-2

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131437-38-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 131437-38-2 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,3,1,4,3 and 7 respectively; the second part has 2 digits, 3 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 131437-38:
(8*1)+(7*3)+(6*1)+(5*4)+(4*3)+(3*7)+(2*3)+(1*8)=102
102 % 10 = 2
So 131437-38-2 is a valid CAS Registry Number.

131437-38-2Relevant academic research and scientific papers

Copper-catalyzed regio- and stereoselective intermolecular three-component oxyarylation of allenes

Itoh, Taisuke,Shimizu, Yohei,Kanai, Motomu

supporting information, p. 2736 - 2739 (2014/06/09)

A copper(II)-catalyzed intermolecular three-component oxyarylation of allenes using arylboronic acids as a carbon source and TEMPO as an oxygen source is described. The reaction proceeded under mild conditions with high regio- and stereoselectivity and functional group tolerance. A plausible reaction mechanism is proposed, involving carbocupration of allenes, homolysis of the intervening allylcopper(II), and a radical TEMPO trap.

Exploratory studies on the reaction between iodoarenes and acetylenes: One-pot, Pd-[Bmim][BF4] catalyzed preparation of trianisylethylene

Barros, Jose C.,Souza, Andrea L. F.,Da Silva, Joaquim F. M.,Antunes

scheme or table, p. 549 - 553 (2012/01/13)

The reaction between iodoarenes and acetylenes mediated by palladium was studied, showing selectivity changes based on the nature of the substituent. A new, phosphine-, copper-, and amine-free methodology was developed, in which the synthesis of trianisylethylene from 4-iodoanisole and trimethylsilylacetylene was promoted presumably by an N-heterocyclic-carbene derived from an ionic liquid and a palladium salt, using ethanol as the hydrogen source. Graphical Abstract: [Figure not available: see fulltext.]

Addition of arylboronic acids to arylpropargyl alcohols en route to indenes and quinolines

Panteleev, Jane,Huang, Richard Y.,Lui, Erica K. J.,Lautens, Mark

supporting information; scheme or table, p. 5314 - 5317 (2011/12/01)

A regio- and stereoselective rhodium-catalyzed synthesis of trisubstituted allylic alcohols is described. The utility of these synthons is demonstrated in a convenient synthesis of indenes and quinolines.

Free-radical-initiated coupling reaction of alcohols and alkynes: Not co but C-C bond formation

Liu, Zhong-Quan,Sun, Liang,Wang, Jian-Guo,Han, Jie,Zhao, Yan-Kai,Zhou, Bo

supporting information; scheme or table, p. 1437 - 1439 (2009/09/07)

This work demonstrates an efficient method to prepare allylic alcohols via direct C-C bond formation using electron-rich alkynes and aliphatic alcohols initiated by tert-butyl hydroperoxide.

COMPLEXES OF TRANSITION METALS IN THE CHEMISTRY OF CONJUGATED SYSTEMS. I. CATALYTIC ADDITION OF ORGANOMAGNESIUM AND ORGANOLITHIUM COMPOUNDS TO ENYNES AND THEIR DERIVATIVES

Zubritskii, L. M.,Fomina, T. N.,Bal'yan, Kh. V.

, p. 63 - 71 (2007/10/02)

Hydrocarbons with a conjugated system of double and triple bonds are capable of catalytic addition of arylmagnesium halides and aryllithiums at the triple bond in the presence of the salts and complexes of transition metals of group VIII.The β-diketonate complexes of Ni(II) and Fe(III) have the greatest activity.In the case of aryllithiums uncatalyzed addition reactions occur as well.Under the same conditions aliphatic Grignard reagents and alkyllithiums give a complex mixture of addition, reduction and oligomerizatin products.The direction of addition is determined solely by the character of substitution in the enyne system.The product yields are also determined by the nature of the metal and of the ligands in the catalyst and by the character of the organomagnesium and organolithium compound.The effect of polar and steric factors of the substituents at the triple bond in the alkyl, aryl, and trialkylsilyl series leads to a change in the direction of coordination and to the formation of the products from addition at the double bond.

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