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Ethanone, 2-[[(4-methoxyphenyl)methyl]amino]-1-phenyl- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

112698-36-9

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112698-36-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 112698-36-9 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,1,2,6,9 and 8 respectively; the second part has 2 digits, 3 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 112698-36:
(8*1)+(7*1)+(6*2)+(5*6)+(4*9)+(3*8)+(2*3)+(1*6)=129
129 % 10 = 9
So 112698-36-9 is a valid CAS Registry Number.

112698-36-9Relevant academic research and scientific papers

Synthesis and 2D QSAR of O-sulphonated β-aminols derivatives as novel antifungal and antibacterial agents

Saxena, Anil K.,Sharma, Sugandha,Pandey, Atindra K.,Shukla, Praveen K.

scheme or table, p. 6476 - 6481 (2011/11/29)

Synthesis of a series of b-aminol derivatives using regioselective opening reaction catalyzed by SiO2 (60-120 mesh) and O-sulphonation in THF-KOH system, comprising tert-butoxycarbonyl at secondary nitrogen and evaluate for various stains of bacteria and fungi. SAR study of synthesized compound using backward regression analysis.

Diastereoselective cobalt-catalyzed reductive aldol cyclizations using diethylzinc as the stoichiometric reductant

Lam, Hon Wai,Joensuu, Pekka M.,Murray, Gordon J.,Fordyce, Euan A. F.,Prieto, Oscar,Luebbers, Thomas

, p. 3729 - 3732 (2007/10/03)

Cobalt catalysis enables a new method for the generation of zinc enolates using diethylzinc to reduce α,β-unsaturated amides. This method has been applied to a high-yielding diastereoselective reductive aldol cyclization.

Purines. L. Synthesis and antileukemic activity of the antibiotic guanine 7-oxide and its 9-substituted derivatives

Ogawa,Nishii,Inagaki,Nohara,Saito,Itaya,Fujii

, p. 343 - 350 (2007/10/02)

A full account is given of the first chemical synthesis of the antitumor antibiotic guanine 7-oxide (5) and its 9-substituted derivatives (24a-k and 26). Coupling of appropriate primary amines (17a-e, g-k) with phenacyl bromide (16) produced, after treatment with HCl, the corresponding N-substituted phenacylamine hydrochlorides (18a-e, g-k). A similar phenacylation of 4-amino-1-butanol (21) failed to give the desired compound 18f, so that 21 was heated with 2-bromomethyl-2-phenyl-1,3-dioxolane (20) at 150-155°C for 3 h to furnish, after treatment with HCl, the amino ketal hydrochloride 22 in 40% yield. Deketalization of 22 with hot 2 N aqueous HCl afforded 18f in 96% yield. Condensations of the free bases, generated in situ from the hydrochlorides 18a-l and 1 N aqueous NaOH, with the chloropyrimidinone 6 were effected in aqueous EtOH at the boiling point for 20 minor at 25-30°C for 3-24 h, giving the 6-phenacylamino-4-pyrimidinones 19a-l in 54-90% yields. On treatment with 2 N aqueous NaOH at room temperature for 10-60 min, the nitropyrimidinones 19a-k cyclized to provide the 9-substituted guanine 7-oxides 24a-k in 61-98% yields. A similar alkali-treatment of 19 l failed to yield guanine 7-oxide (5). However, removal of the 9-(arylmethyl) group from 24i-k was effected with conc. H2SO4 at room temperature for 1-3 h in the presence of toluene, producing the target N-oxide 5 in 56-89% yields. In the in vitro bioassay of antileukemic activity against murine L5178Y cells, none of the 9-substituted guanine 7-oxides (24a-k and 26) was more effective than the parent, natural N-oxide 5. Within this series, however, the benzyl analogues 24g-k withor without alkoxy functions were more cytotoxic, with IC50's of 13.0-48.0 μg/ml, than the alkyl analogues 24a-f.

SYNTHESIS OF GUANIN 7-OXIDE, AN ANTITUMOR ANTIBIOTIC FROM STREPTOMYCES SPECIES

Nohara, Fujio,Nishii, Masahiro,Ogawa, Kazuo,Isono, Kiyoshi,Ubukata, Makoto,et. al

, p. 1287 - 1290 (2007/10/02)

The first synthesis of the antitumor antibiotic guanine 7-oxide (VI) has been achived via a 4-step route starting from phenacyl bromide (I) and the nitropyrimidone III and proceeding through the intermediates IVe and Ve.

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