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(2aR,3R,5aS,8aR)-4,4-dibenzyl 3,5a-diethyl 2-oxohexahydro-2H-indeno[3a,4-b]oxete-3,4,4,5a(5H)-tetracarboxylate is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1491156-48-9

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1491156-48-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1491156-48-9 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,4,9,1,1,5 and 6 respectively; the second part has 2 digits, 4 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 1491156-48:
(9*1)+(8*4)+(7*9)+(6*1)+(5*1)+(4*5)+(3*6)+(2*4)+(1*8)=169
169 % 10 = 9
So 1491156-48-9 is a valid CAS Registry Number.

1491156-48-9Downstream Products

1491156-48-9Relevant academic research and scientific papers

Multicomponent, Enantioselective Michael-Michael-Aldol-β-Lactonizations Delivering Complex β-Lactones

Van, Khoi N.,Romo, Daniel

, p. 632 - 643 (2018/01/27)

Optically active, tertiary amine Lewis bases react with unsaturated acid chlorides to deliver chiral, α,β-unsaturated acylammonium salts. These intermediates participate in a catalytic, enantioselective, three-component process delivering bi- and tricyclic β-lactones through a Michael-Michael-aldol-β-lactonization. In a single operation, the described multicomponent, organocascade process forms complex bi- and tricyclic β-lactones by generating four new bonds, two rings, and up to four contiguous stereocenters. In the racemic series, yields of 22-75% were achieved using 4-pyrrolidinopyridine as Lewis base. In the enantioselective series employing isothiourea catalysts, a kinetic resolution of the initially formed racemic Michael adduct appears operative, providing yields of 46% to quantitative (based on 50% max) with up to 94:6 er. Some evidence for a dynamic kinetic asymmetric transformation for tricyclic-β-lactone 1d was obtained following optimization (yields up to 61%, 94:6 er) through a presumed reversible Michael.

Rapid assembly of complex cyclopentanes employing chiral, α,β-unsaturated acylammonium intermediates

Liu, Gang,Shirley, Morgan E.,Van, Khoi N.,Mcfarlin, Rae Lynn,Romo, Daniel

, p. 1049 - 1057 (2014/01/06)

With the intention of improving synthetic efficiency, organic chemists have turned to bioinspired organocascade or domino processes that generate multiple bonds and stereocentres in a single operation. However, despite the great importance of substituted cyclopentanes, given their prevalence in complex natural products and pharmaceutical agents, the rapid, enantioselective assembly of these carbocycles lags behind cyclohexanes. Here, we describe a Michael-aldol-β-lactonization organocascade process for the synthesis of complex cyclopentanes utilizing chiral α,β-unsaturated acylammonium intermediates, readily generated by activation of commodity unsaturated acid chlorides with chiral isothiourea catalysts. This efficient methodology enables the construction of two C-C bonds, one C-O bond, two rings and up to three contiguous stereogenic centres delivering complex cyclopentanes with high levels of relative and absolute stereocontrol. Our results suggest that α,β-unsaturated acylammonium intermediates have broad utility for the design of organocascade and multicomponent processes, with the latter demonstrated by a Michael-Michael-aldol-β-lactonization.

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