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137820-47-4

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137820-47-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 137820-47-4 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,3,7,8,2 and 0 respectively; the second part has 2 digits, 4 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 137820-47:
(8*1)+(7*3)+(6*7)+(5*8)+(4*2)+(3*0)+(2*4)+(1*7)=134
134 % 10 = 4
So 137820-47-4 is a valid CAS Registry Number.

137820-47-4Relevant articles and documents

Synthesis of d -Fagomine and Its Seven- and Eight-Membered Higher-Ring Analogues, and the Formal Synthesis of (+)-Australine from l -Xylose-Derived Chiron

Das, Pintu,Ajay, Sama,Shaw, Arun K.

, p. 3753 - 3762 (2016/11/08)

The synthesis of d-fagomine and its seven- and eight-membered higher-ring analogues from commercially available l-xylose is reported. The syntheses involve elaboration of a common alkenol precursor obtained from l-xylose-derived hemiacetal. The key steps

Applications of thiyl radical cyclizations for the synthesis of thiosugars

Malone, Aoife,Scanlan, Eoin M.

, p. 504 - 507 (2013/04/10)

The use of intramolecular thiyl radical cyclizations for the synthesis of thiosugars has been investigated, and a new free-radical-based methodology for the synthesis of biologically important thiosugars has been developed. The methodology is mild and pro

Total syntheses of (+)-australine and (-)-7-epialexine

Pearson, William H.,Hines, Jennifer V.

, p. 5785 - 5793 (2007/10/03)

Three approaches were examined for the synthesis of 3-(hydroxymethyl)pyrrolizidines, a class of compounds that includes the polyhydroxylated pyrrolizidine alkaloids alexine (1), australine (2), and various stereoisomers of thereof. In the first approach, the intramolecular cycloaddition of an azide onto an electron-rich 1,3-diene bearing a terminal alkoxymethyl substituent (i.e., 21) afforded the dehydropyrrolizidines 22a and 22b, with 22a predominating. A rationale for this stereoselectivity was proposed. Transformation of the major diastereomer 22a into a natural 3-(hydroxymethyl)-pyrrolizidine was not possible due to difficulties encountered in transforming the phenyl vinyl sulfide functionality into other useful functional groups. A second approach was examined, Wherein the intramolecular cycloaddition of an azide with an optically pure S-t-Bu-substituted diene (i.e., 30) was found to produce the pyrrolizidine 31. In this case, the alkoxymethyl substituent was incorporated into the tether between the azide and the diene, rather than on the diene itself. A key transformation in the synthesis of the diene 30 was the use of the allylic borane R2BCH2CH=C(TMS)(StBu) for the stereoselective conversion of the D-arabinose-derived azido aldehyde 28 to the E-isomer of 30. The cyclization of 30 to 31 also produced the bicyclic triazene 32, the result of 1,3-dipolar cycloaddition of the azide onto the distal double bond of the diene. Again, difficulties in transformation of the vinyl sulfide functionality of 31 into useful oxygen functionality limited this approach to naturally occurring 3-(hydroxymethyl)pyrrolizidines. A third approach to these compounds was successful. The transformation of L-xylose into the azido epoxy tosylate 46 was accomplished using two Wittig reactions and an epoxidation, in addition to other standard functional group manipulations. Reductive double-cyclization of 46 afforded the pyrrolizidines 47a and 47b, which were debenzylated to afford (+)-australine 2 and (-)-7-epialexine 4, respectively. In the preliminary report of this work, erroneous spectroscopic data in the original literature on the structural assignment of australine led to the conclusion that the synthetic material obtained herein was actually (+)-7-epiaustraline. Recently corrected spectroscopic data have appeared which verify that (+)-australine 2 was indeed synthesized for the first time.

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