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72357-06-3

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72357-06-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 72357-06-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 7,2,3,5 and 7 respectively; the second part has 2 digits, 0 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 72357-06:
(7*7)+(6*2)+(5*3)+(4*5)+(3*7)+(2*0)+(1*6)=123
123 % 10 = 3
So 72357-06-3 is a valid CAS Registry Number.

72357-06-3Downstream Products

72357-06-3Relevant articles and documents

Axially Chiral Enamides: Substituent Effects, Rotation Barriers, and Implications for their Cyclization Reactions

Clark, Andrew J.,Curran, Dennis P.,Fox, David J.,Ghelfi, Franco,Guy, Collette S.,Hay, Benjamin,James, Natalie,Phillips, Jessica M.,Roncaglia, Fabrizio,Sellars, Philip B.,Wilson, Paul,Zhang, Hanmo

, p. 5547 - 5565 (2016/07/14)

The barrier to rotation around the N-alkenyl bond of 38 N-alkenyl-N-alkylacetamide derivatives was measured (ΔG∞ rotation varied between -1). The most important factor in controlling the rate of rotation was the level of alkene substitution, followed by the size of the nitrogen substituent and, finally, the size of the acyl substituent. Tertiary enamides with four alkenyl substituents exhibited half-lives for rotation between 5.5 days and 99 years at 298 K, sufficient to isolate enantiomerically enriched atropisomers. The radical cyclizations of a subset of N-alkenyl-N-benzyl-α-haloacetamides exhibiting relatively high barriers to rotation round the N-alkenyl bond (ΔG∞ rotation >20 kcal mol-1) were studied to determine the regiochemistry of cyclization. Those with high barriers (>27 kcal mol-1) did not lead to cyclization, but those with lower values produced highly functionalized γ-lactams via a 5-endo-trig radical-polar crossover process that was terminated by reduction, an unusual cyclopropanation sequence, or trapping with H2O, depending upon the reaction conditions. Because elevated temperatures were necessary for cyclization, this precluded study of the asymmetric transfer in the reaction of individual atropisomers. However, enantiomerically enriched atropsiomeric enamides should be regarded as potential asymmetric building blocks for reactions that can be accomplished at room temperature.

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