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(RS)-(3-methyl-1-nitrobutan-2-yl)benzene is a complex organic compound with the molecular formula C11H15NO2. It is a chiral molecule, meaning it has a non-superimposable mirror image, and the "RS" notation indicates that it is a racemic mixture, containing equal amounts of both the R and S enantiomers. (RS)-(3-methyl-1-nitrobutan-2-yl)benzene features a benzene ring, a 3-methyl-1-nitrobutan-2-yl group, which consists of a 3-methylbutane chain with a nitro group (-NO2) attached to the second carbon. The nitro group imparts explosive and reactive properties to the molecule, while the 3-methyl group adds steric hindrance. This chemical is primarily used in the synthesis of pharmaceuticals, agrochemicals, and other specialty chemicals, where its unique structure can be exploited for specific reactivity or biological activity.

7796-81-8

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7796-81-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7796-81-8 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,7,9 and 6 respectively; the second part has 2 digits, 8 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 7796-81:
(6*7)+(5*7)+(4*9)+(3*6)+(2*8)+(1*1)=148
148 % 10 = 8
So 7796-81-8 is a valid CAS Registry Number.

7796-81-8Downstream Products

7796-81-8Relevant academic research and scientific papers

Substrate Scope Evaluation of the Enantioselective Reduction of β-Alkyl-β-arylnitroalkenes by Old Yellow Enzymes 1-3 for Organic Synthesis Applications

Bertolotti, Mattia,Brenna, Elisabetta,Crotti, Michele,Gatti, Francesco G.,Monti, Daniela,Parmeggiani, Fabio,Santangelo, Sara

, p. 577 - 583 (2016)

The substrate scope of the old yellow enzyme catalyzed reduction of β-alkyl-β-arylnitroalkenes is investigated. Compounds bearing either alkyl chains of increasing length at the carbon atom in position β to the nitro group or different substituents on the aromatic ring are prepared and submitted to bioreduction, to define the synthetic potential of this enantioselective reaction in the preparation of chiral fine chemicals. The versatility of the resulting nitroalkanes as chiral building blocks is shown by reducing the nitro group into a primary amine and by converting it into a carboxylic acid moiety by Meyer reaction. An "explosion" of chiral products can be observed by combining the highly enantioselective ene-reductase-mediated reduction of nitroalkenes with the chemical versatility of the nitro group.

Chiral NHC ligands bearing a pyridine moiety in copper-catalyzed addition of diethylzinc to nitroalkenes

Soeta, Takahiro,Hatanaka, Yuichi,Ishizaka, Tomohiro,Ukaji, Yutaka

, p. 4601 - 4605 (2018/07/30)

Chiral N-heterocyclic carbenes, derived from amino acids containing a pyridine ring, are effective ligands in the enantioselective copper-catalyzed addition of diethylzinc to β-nitroalkenes, which provides access to chiral nitroalkanes. The advantages of this process include high yields, broad and complementary substrate scope, and good to high enantioselectivities.

Metal-Templated Design: Enantioselective Hydrogen-Bond-Driven Catalysis Requiring only Parts-per-Million Catalyst Loading

Xu, Weici,Arieno, Marcus,L?w, Henrik,Huang, Kaifang,Xie, Xiulan,Cruchter, Thomas,Ma, Qiao,Xi, Jianwei,Huang, Biao,Wiest, Olaf,Gong, Lei,Meggers, Eric

supporting information, p. 8774 - 8780 (2016/08/02)

Based on a metal-templated approach using a rigid and globular structural scaffold in the form of a bis-cyclometalated octahedral iridium complex, an exceptionally active hydrogen-bond-mediated asymmetric catalyst was developed and its mode of action inve

Asymmetric catalysis with an inert chiral-at-metal iridium complex

Chen, Liang-An,Xu, Weici,Huang, Biao,Ma, Jiajia,Wang, Lun,Xi, Jianwei,Harms, Klaus,Gong, Lei,Meggers, Eric

supporting information, p. 10598 - 10601 (2013/08/23)

The development of a chiral-at-metal iridium(III) complex for the highly efficient catalytic asymmetric transfer hydrogenation of β,β′- disubstituted nitroalkenes is reported. Catalysis by this inert, rigid metal complex does not involve any direct metal coordination but operates exclusively through weak interactions with functional groups properly arranged in the ligand sphere of the iridium complex. Although the iridium complex relies only on the formation of three hydrogen bonds, it exceeds the performance of most organocatalysts with respect to enantiomeric excess (up to 99% ee) and catalyst loading (down to 0.1 mol %). This work hints at an advantage of structurally complicated rigid scaffolds for non-covalent catalysis, which especially relies on conformationally constrained cooperative interactions between the catalyst and substrates.

Deoxycholic acid-derived biaryl phosphites as versatile and enantioselective ligands in the rhodium-catalyzed conjugate addition of arylboronic acids to nitroalkenes

Jumde, Varsha R.,Iuliano, Anna

supporting information, p. 3475 - 3483 (2013/12/04)

A highly enantioselective conjugate addition of arylboronic acids to cyclic as well as acyclic aromatic and aliphatic nitroalkenes is presented. The rhodium complexes obtained from deoxycholic acid-derived binaphthyl and flexible biphenyl phosphites showed good activity as well as very high enantioselectivity (ee up to 99%) in the conjugated addition even in the presence of challenging substrates such as 1-nitrocyclohexene or aliphatic acyclic nitroalkenes. Copyright

Generation of nitroalkanes, hydroximoyl halides and nitrile oxides from the reactions of β-nitrostyrenes with Grignard or organolithium reagents

Yao, Ching-Fa,Kao, Kuo-Hsi,Liu, Ju-Tsung,Chu, Cheng-Ming,Wang, Yeh,Chen, Wen-Chang,Lin, Yu-Mei,Lin, Wen-Wei,Yan, Ming-Chung,Liu, Jing-Yuan,Chuang, Ming-Ching,Shiue, Jin-Lien

, p. 791 - 822 (2007/10/03)

The β-nitrostyrenes 1 or 2 react with Grignard or organolithium reagents in ether or THF solution to generate by 1,4-addition the intermediate nitronates A. When A is treated with dilute hydrochloric acid, high yields of the nitroalkanes 3 (and oximes 4) or 5 are obtained Hydroximoyl halides 6, 8 or nitrile oxides 7 can be isolated when the intermediate A is slowly added to the ice cold concentrated hydrohalic acid. The same products 6 and/or 7 are observed if the nitronates, generated from the substrate 1a, are added to 85% aqueous H2SO4 but only the hydrolyzed carboxylic acids 9 are generated when the β-nitrostyrenes 2 are reacted with Grignard reagents and worked up under the same condition. The nitrile oxides 7 can undergo 1,3-dipolar cycloaddition with alkenes or alkynes to generate 2-isoxazolines or isoxazoles. A one-pot synthesis of the [n,3,0] bicyclic (n = 3 or 4) compounds 23-27 by intramolecular nitrile oxide-olefin cycloadditions is reported.

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