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1262296-30-9

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1262296-30-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1262296-30-9 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,2,6,2,2,9 and 6 respectively; the second part has 2 digits, 3 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 1262296-30:
(9*1)+(8*2)+(7*6)+(6*2)+(5*2)+(4*9)+(3*6)+(2*3)+(1*0)=149
149 % 10 = 9
So 1262296-30-9 is a valid CAS Registry Number.

1262296-30-9Relevant articles and documents

Electrochemical reduction of dehydroamino acids: Synthesis and photophysical properties of β,β-diarylalanines

Ferreira, Paula M.T.,Monteiro, Luís S.,Castanheira, Elisabete M.S.,Pereira, Goreti,Lopes, Carla,Vilaa, Helena

experimental part, p. 193 - 200 (2011/02/27)

Several β,β-disubstituted dehydroalanines were prepared from β,β-dibromo or β-bromo, β-substituted dehydroalanines and aryl boronic acids using a Suzuki-Miyaura cross-coupling reaction. The electrochemical behaviour of these compounds was studied by cyclic voltammetry. All compounds studied showed similar reduction potentials and these were similar to the peak potential of the methyl ester of N-tert-butoxycarbonyl dehydrophenylalanine. Thus, the presence of a second aryl moiety in the dehydroalanine scaffold does not significantly change the reduction potential. Controlled potential electrolyses were performed at the cathodic peak potential in the presence of triethylammonium chloride as proton donor. The only products isolated in good to high yields were the corresponding β,β- diarylalanines. This reaction was also carried out using a dipeptide containing a β,β-diaryldehydroalanine to give a 1:1 diastereomeric mixture of the reduction product. The photophysical properties of two of the β,β-diaryldehydroalanines and of the corresponding β,β-diarylalanines were studied in three solvents of different polarity. The β,β-diaryldehydroalanines show low fluorescent quantum yields (ΦF9%) due to the conjugation of the aromatic moieties with the α,β-double bond and with the carbonyl group, which favours the non-radiative deactivation pathways. The absence of conjugation in the reduction products leads to a significant increase in the fluorescence quantum yields. These results show that the β,β-disubstituted alanines could be used as fluorescent markers.

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