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2-Benzyl-2-cyano-pent-4-enoic acid ethyl ester is a complex organic compound with the molecular formula C15H17NO2. It is a derivative of pent-4-enoic acid, featuring a benzyl group (C6H5CH2-) attached to the second carbon and a cyano group (-CN) at the same position. The molecule also contains a double bond between the fourth and fifth carbon atoms, indicating its enoic nature. The ethyl ester functional group (-COOCH2CH3) is present, which is formed by the esterification of the carboxylic acid group with ethanol. 2-benzyl-2-cyano-pent-4-enoic acid ethyl ester is known for its potential applications in the synthesis of various pharmaceuticals and agrochemicals, as well as its use as an intermediate in organic chemistry. It is characterized by its unique structure and reactivity, which can be exploited in various chemical transformations.

6731-59-5

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6731-59-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 6731-59-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 6,7,3 and 1 respectively; the second part has 2 digits, 5 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 6731-59:
(6*6)+(5*7)+(4*3)+(3*1)+(2*5)+(1*9)=105
105 % 10 = 5
So 6731-59-5 is a valid CAS Registry Number.

6731-59-5Relevant academic research and scientific papers

Development of pharmaceutical drugs, drug intermediates and ingredients by using direct organo-click reactions

Ramachary, Dhevalapally B.,Kishor, Mamillapalli,Reddy, Y. Vijayendar

supporting information; experimental part, p. 975 - 993 (2009/04/11)

Here we report on our studies of the use of combinations of amino acids, amines, K2CO3 or Cs2CO3 and CuSO4/Cu for catalysing green cascade reactions. We aimed to prepare the highly reactive and substituted olefin species 7 and 8, under very mild and environmentally friendly conditions, thus giving the hydrogenated products 10 and 12 through the action of Hantzsch ester (4) by self-catalysis through decreasing the HOMO-LUMO energy gaps between olefins 7/8 and Hantzsch ester (4) through biomimetic reductions. Highly useful compounds 10 to 14 were assembled from simple substrates such as aldehydes 1, ketones 2, CH acids 3, Hantzsch ester (4) and alkyl halides 5 by diversity-oriented green synthesis involving cascade olefination/hydrogenation (O/H), olefination/hydrogenation/alkylation (O/H/A) and hydrogenation/olefination/hydrogenation (H/O/H) reaction sequences in one-pot fashion with stereospecific organo- and organo-/metal-carbonate catalysis. Highly functionalized diverse compounds such as 10 to 14 are biologically active products and have found wide applications as pharmaceutical drugs, drug intermediates and drug ingredients. For the first time in organocatalysis, we report the O/H/A/TE reaction to furnish high yields of transesterification products 11 by simply mixing the reactants under proline/K2CO3 catalysis conditions. Additionally, a novel organocatalytic H/O/H reaction sequence for the synthesis of alkyl-substituted aromatics has been developed. Furthermore, for the first time we have developed organocatalysed cascade olefination/hydrogenation/hydrolysis (O/H/H) reactions to furnish highly useful materials such as 2-oxochroman-3-carboxylic acid (14kc) and 2-amino-4H-chromene-3-carbonitrile (14kj) in good yields. Experimentally simple and environmentally friendly organocatalytic two-carbon homologation through cascade O/H/H reactions of aldehydes 1, Meldrum's acid (3c), Hantzsch ester (4) and acetic acid/triethylamine in ethanol has been demonstrated. Additionally, we have developed a green synthesis of the highly substituted 1,2,3-triazole 17 from simple substrates through a two-step combination of olefination/hydrogenation/alkylation and Huisgen cycloaddition reaction sequences under stereospecific organocopper catalysis conditions. In this paper we have found strong support for our hypothesis that, "decreasing the HOMO-LUMO energy gap between olefins 7/8 and Hantzsch ester (4) will drive the biomimetic hydrogenation reaction by self-catalysis". This self-catalysis was further confirmed with many varieties of examples. Wiley-VCH Verlag GmbH & Co. KGaA, 2008.

Catalytic and highly regiospecific carbon-carbon bond formation at α-position of Michael acceptor by palladium complex

Shim, Jae-Goo,Jong, Chul Park,Chan, Sik Cho,Sang, Chul Shim,Yamamoto, Yoshinori

, p. 852 - 853 (2007/10/03)

Activated olefins react with allyl acetates and Bu3SnH in the presence of a catalytic amount of a palladium catalyst to afford the corresponding products which construct a new C-C bond selectively at the α-position of Michael acceptors.

A convenient new procedure for the construction of highly substituted acetates. Reductive alkylation of α-cyano esters

Shia, Kak-Shan,Chang, Nien-Yin,Yip, Judy,Liu, Hsing-Jang

, p. 7713 - 7716 (2007/10/03)

A convenient, highly efficient general method for the preparation of highly substituted acetates has been developed, making use of reductive alkylation of α-cyano esters as a key operation.

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