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(2S,3S)-3-[(1-oxo-2-cyclohexen-3-yl)amino]-2-(tert-butyldimethylsilyloxy)butyl bromide is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

782498-13-9

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782498-13-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 782498-13-9 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 7,8,2,4,9 and 8 respectively; the second part has 2 digits, 1 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 782498-13:
(8*7)+(7*8)+(6*2)+(5*4)+(4*9)+(3*8)+(2*1)+(1*3)=209
209 % 10 = 9
So 782498-13-9 is a valid CAS Registry Number.

782498-13-9Downstream Products

782498-13-9Relevant academic research and scientific papers

Total synthesis of lepadins B, D, E, and H; determination of the configuration of the latter three alkaloids

Pu, Xiaotao,Ma, Dawei

, p. 4222 - 4225 (2004)

A common bicyclic intermediate was used in an efficient strategy towards lepadins B, D, E, and H shown. These alkaloids are members of a family of natural products with diverse biological activity. The described total syntheses of lepadins D, E, and H ena

Facile entry to substituted decahydroquinoline alkaloids. Total synthesis of lepadins A-E and H

Pu, Xiaotao,Ma, Dawei

, p. 6562 - 6572 (2007/10/03)

Condensation of a L-alanine derived δ-bromo-β-silyloxy- propylamine with 1,3-cyclohexadione followed by alkylative cyclization produces a bicyclic enone. Diastereoselective Pt/C-catalyzed hydrogenation of this enone in HOAc provides a 5-oxo-cis-fused decahydroquinoline. Wittig olefination of this decahydroquinoline and subsequent epimerization of the resulting 5-formyl intermediate gives rise to a 5-β-formyl decahydroquinoline exclusively. In a parallel procedure, Peterson reaction of this decahydroquinoline and subsequent hydrogenation of the generated 5-exo-olefin provides a decahydroquinoline with a 5-α-substituent predominantly. For these two diastereoselective processes, using the intermediates without N-protection as the substrates is essential because the corresponding N-Boc intermediates give poor diastereoselectivity. The intermediate with β-form side chain is further converted into lepadins A-C via carbon chain elongation, while the intermediate with α-form side chain is transformed into lepadins D, E, and H and corresponding 5′-epimers via connection with two sulfones generated from two Sharpless epoxidation products. By comparison of the rotations and NMR data, the stereochemistry of lepadins D, E, and H is assigned as 2S,3R,4aS,5S,8aR,5′R.

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