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Benzenemethanol, a-(1-ethenylcyclohexyl)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

63049-57-0

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63049-57-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 63049-57-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,3,0,4 and 9 respectively; the second part has 2 digits, 5 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 63049-57:
(7*6)+(6*3)+(5*0)+(4*4)+(3*9)+(2*5)+(1*7)=120
120 % 10 = 0
So 63049-57-0 is a valid CAS Registry Number.

63049-57-0Downstream Products

63049-57-0Relevant academic research and scientific papers

Cu-Catalyzed Aminoacyloxylation of Unactivated Alkenes of Unsaturated Hydrazones with Manifold Carboxylic Acids toward Ester-Functionalized Pyrazolines

Liu, Rui-Hua,Wang, Zi-Qing,Wei, Bang-Yi,Zhang, Jian-Wu,Zhou, Bo,Han, Bing

, p. 4183 - 4186 (2018)

A copper-catalyzed aminoacyloxylation of unactivated alkenes of unsaturated hydrazones is achieved by using various commercially available carboxylic acids as the acyloxylating reagents and di-tert-butyl peroxide (DTBP) as the oxidant. By using this metho

Catalytic Allylation of Aldehydes Using Unactivated Alkenes

Tanabe, Shun,Mitsunuma, Harunobu,Kanai, Motomu

supporting information, p. 12374 - 12381 (2020/07/14)

Simple feedstock organic molecules, especially alkenes, are attractive starting materials in organic synthesis because of their wide availability. Direct utilization of such bulk, inert organic molecules for practical and selective chemical reactions, however, remains limited. Herein, we developed a ternary hybrid catalyst system comprising a photoredox catalyst, a hydrogen-atom-transfer catalyst, and a chromium complex catalyst, enabling catalytic allylation of aldehydes with simple alkenes, including feedstock lower alkenes. The reaction proceeded under visible-light irradiation at room temperature and with high functional group tolerance. The reaction was extended to an asymmetric variant by employing a chiral chromium complex catalyst.

Palladium-Catalyzed Oxidative Borylation of Allylic C-H Bonds in Alkenes

Mao, Lujia,Bertermann, Rüdiger,Rachor, Simon G.,Szabó, Kálmán J.,Marder, Todd B.

supporting information, p. 6590 - 6593 (2017/12/26)

This communication describes an efficient palladium pincer complex-catalyzed allylic C-H borylation of alkenes. The transformation exhibits high regio- and stereoselectivity with a variety of linear alkenes. A synthetically useful feature of this allylic C-H borylation method is that all allyl-Bpin products can be isolated in usually high yields. Preliminary mechanistic studies indicate that this C-H borylation reaction proceeds via Pd(IV) pincer complex intermediates.

Petasis borono-Mannich reaction and allylation of carbonyl compounds via transient allyl boronates generated by palladium-catalyzed substitution of allyl alcohols. An efficient one-pot route to stereodefined α-amino acids and homoallyl alcohols

Selander, Nicklas,Kipke, Andreas,Sebelius, Sara,Szabo, Kalman J.

, p. 13723 - 13731 (2008/04/04)

An efficient one-pot procedure was designed by integration of the pincer-complex-catalyzed borylation of allyl alcohols in the Petasis borono-Mannich reaction and in allylation of aldehydes and ketones. These procedures are suitable for one-pot synthesis of α-amino acids and homoallyl alcohols from easily available allyl alcohol, amine, aldehyde, or ketone substrates. In the presented transformations, the active allylating agents are in situ generated allyl boronic acid derivatives. These transient intermediates are proved to be reasonably acid-, base-, alcohol-, water-, and air-stable species, which allows a high level of compatibility with the reaction conditions of the allylation of various aldehyde/ketone and imine electrophiles. The boronate source of the reaction is diboronic acid or in situ hydrolyzed diboronate ester ensuring that the waste product of the reaction is nontoxic boric acid. The regio- and stereoselectivity of the reaction is excellent, as almost all products form as single regio- and stereoisomers. The described procedure is suitable to create quaternary carbon centers in branched allylic products without formation of the corresponding linear allylic isomers. Furthermore, products comprising three stereocenters were formed as single products without formation of other diastereomers. Because of the highly disciplined consecutive processes, up to four-step, four-component transformations could be performed selectively as a one-pot sequence. For example, stereodefined pyroglutamic acid could be prepared from a simple allyl alcohol, a commercially available amine, and glyoxylic acid in a one-step procedure. The presented method also grants an easy access to stereodefined 1,7-dienes that are useful substrates for Grubbs ring-closing metathesis.

Transformation of zirconocene-olefin complexes into zirconocene allyl hydride and their use as dual nucleophilic reagents: Reactions with acid chloride and 1,4-diketone

Fujita, Kazuya,Yorimitsu, Hideki,Shinokubo, Hiroshi,Oshima, Koichiro

, p. 6776 - 6783 (2007/10/03)

Zirconocene-olefin complexes Cp2Zr(H2C=CHR), prepared in benzene-THF at 0 °C, react with acid chlorides to provide homoallylic alcohols. The key is an equilibrium between the zirconocene-olefin complexes and the corresponding zircono

Highly Selective Carbon-Carbon Bond Forming Reactions Mediated by Chromium(II) Reagents

Hiyama, Tamejiro,Okude, Yoshitaka,Kimura, Keizo,Nozaki, Hitosi

, p. 561 - 568 (2007/10/02)

A low valent chromium reagent is generated from chromium(III) chloride and a half mol of lithium aluminum hydride in tetrahydrofuran.The reagent behaves similarly to anhydrous chromium(II) chloride, which is commercially available, and reduces allylic halides to produce unisolable allylchromium species which add efficiently to aldehydes or ketones with high degree of stereo- and chemoselectivity.Particularly, high threo selectivity is observed in the reaction of aldehydes and 1-bromo-2-butene and is ascribed to a chair-like six-membered transition state.Simple reduction od allylic and benzylic halides produces biallyls and bibenzyls, while gem-dibromocyclopropanes afford the corresponding allenes in excellent yields.

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