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Carbamic acid, 1,3-pentadienyl-, phenylmethyl ester, (E,E)- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

161330-60-5

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161330-60-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 161330-60-5 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,6,1,3,3 and 0 respectively; the second part has 2 digits, 6 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 161330-60:
(8*1)+(7*6)+(6*1)+(5*3)+(4*3)+(3*0)+(2*6)+(1*0)=95
95 % 10 = 5
So 161330-60-5 is a valid CAS Registry Number.

161330-60-5Relevant academic research and scientific papers

Visible-Light, Photoredox-Mediated Oxidative Tandem Nitroso-Diels–Alder Reaction of Arylhydroxylamines with Conjugated Dienes

Santacroce, Veronica,Duboc, Raphael,Malacria, Max,Maestri, Giovanni,Masson, Geraldine

, p. 2095 - 2098 (2017)

Arylhydroxylamines were used in the nitroso-Diels–Alder reaction to generate in situ nitrosoarenes under visible-light, catalytic and aerobic conditions. Mixing a solution of aryl- or heteroarylhydroxylamines with conjuguated dienes in the presence of a catalytic amount of Ru(bpy)3Cl2 afforded 3,6-dihydro-1,2-oxazines in good yields under an oxygen atmosphere.

Molecular Design of a Chiral Br?nsted Acid with Two Different Acidic Sites: Regio-, Diastereo-, and Enantioselective Hetero-Diels-Alder Reaction of Azopyridinecarboxylate with Amidodienes Catalyzed by Chiral Carboxylic Acid-Monophosphoric Acid

Momiyama, Norie,Tabuse, Hideaki,Noda, Hirofumi,Yamanaka, Masahiro,Fujinami, Takeshi,Yamanishi, Katsunori,Izumiseki, Atsuto,Funayama, Kosuke,Egawa, Fuyuki,Okada, Shino,Adachi, Hiroaki,Terada, Masahiro

, p. 11353 - 11359 (2016)

A chiral Br?nsted acid containing two different acidic sites, chiral carboxylic acid-monophosphoric acid 1a, was designed to be a new and effective concept in catalytic asymmetric hetero-Diels-Alder reactions of azopyridinecarboxylate with amidodienes. The multipoint hydrogen-bonding interactions among the carboxylic acid, monophosphoric acid, azopyridinecarboxylate, and amidodiene achieved high catalytic and chiral efficiency, producing substituted 1,2,3,6-tetrahydropyridazines with excellent stereocontrol in a single step. This constitutes the first example of regio-, diastereo-, and enantioselective azo-hetero-Diels-Alder reactions by chiral Br?nsted acid catalysis.

Enantioselective and Diastereodivergent Synthesis of Spiroindolenines via Chiral Phosphoric Acid-Catalyzed Cycloaddition

Gandon, Vincent,Masson, Géraldine,Mati?i?, Mateja,Neuville, Luc,Van Elslande, Elsa,Varlet, Thomas

supporting information, p. 11611 - 11619 (2021/08/16)

A diastereodivergent and enantioselective synthesis of chiral spirocyclohexyl-indolenines with four contiguous stereogenic centers is achieved by a chiral phosphoric acid-catalyzed cycloaddition of 2-susbtituted 3-indolylmethanols with 1,3-dienecarbamates. Modular access to two different diastereoisomers with high enantioselectivities was obtained by careful choice of reaction conditions. Their functional group manipulation provides an efficient access to enantioenriched spirocyclohexyl-indolines and -oxindoles. The origins of this stereocontrol have been identified using DFT calculations, which reveal an unexpected mechanism compared to our previous work dealing with enecarbamates.

Highly Diastereo- and Enantioselective Synthesis of Cyclohepta[b]indoles by Chiral-Phosphoric-Acid-Catalyzed (4+3) Cycloaddition

Gelis, Coralie,Levitre, Guillaume,Merad, Jérémy,Retailleau, Pascal,Neuville, Luc,Masson, Géraldine

supporting information, p. 12121 - 12125 (2018/09/11)

A highly enantio- and diastereoselective formal (4+3) cycloaddition of 1,3-diene-1-carbamates with 3-indolylmethanols in the presence of a chiral phosphoric acid catalyst is reported. The approach described herein provides efficient access to 6-aminotetrahydrocyclohepta[b]indoles in good yields with mostly complete diastereoselectivity and excellent levels of enantioselectivity (>98:2 dr and up to 98 % ee). Mild reaction conditions, facile scale-up, and versatile derivatization highlight the practicality of this methodology. A mechanistic study suggests that cycloaddition occurs in a stepwise fashion, after the formation of an ion pair between the chiral catalytic phosphate and the intermediate carbocation.

Chiral Pyridinium Phosphoramide as a Dual Br?nsted Acid Catalyst for Enantioselective Diels-Alder Reaction

Nishikawa, Yasuhiro,Nakano, Saki,Tahira, Yuu,Terazawa, Kanako,Yamazaki, Ken,Kitamura, Chitoshi,Hara, Osamu

supporting information, p. 2004 - 2007 (2016/06/01)

Chiral pyridinium phosphoramide 1·HX was designed to be a new class of chiral Br?nsted acid catalyst in which both the pyridinium proton and the adjacent imide-like proton activated by the electron-withdrawing pyridinium moiety could work cooperatively as strong dual proton donors. The potential of 1·HX was shown in the enantioselective Diels-Alder reactions of 1-amino dienes with various dienophiles including N-unsubstituted maleimide, which has yet to be successfully used in an asymmetric Diels-Alder reaction.

Regio-, Diastereo-, and Enantioselective Nitroso-Diels-Alder Reaction of 1,3-Diene-1-carbamates Catalyzed by Chiral Phosphoric Acids

Pous, Jonathan,Courant, Thibaut,Bernadat, Guillaume,Iorga, Bogdan I.,Blanchard, Florent,Masson, Géraldine

supporting information, p. 11950 - 11953 (2015/10/06)

Chiral phosphoric acid-catalyzed asymmetric nitroso-Diels-Alder reaction of nitrosoarenes with carbamate-dienes afforded cis-3,6-disubstituted dihydro-1,2-oxazines in high yields with excellent regio-, diastereo-, and enantioselectivities. Interestingly,

The Chemistry of Vicinal Tricarbonyls. Use of Vinyl and Acetylenic Derivatives in the Synthesis of Substituted Indoles.

Wasserman, Harry H,Blum, Charles A.

, p. 9787 - 9790 (2007/10/02)

Vinyl and acetylenic vicinal tricarbonyl derivatives take part as dienophiles in Diels-Alder reactions leading to substituted indoles as well as to their dihydro and tetrahydro derivatives.

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