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1.
Org Biomol Chem ; 21(28): 5866-5872, 2023 Jul 19.
Article in English | MEDLINE | ID: mdl-37404065

ABSTRACT

When treated with the catalytic system Pd(OAc)2/PPh3/Cs2CO3/benzoquinone in dioxane or Pd(PPh3)2Cl2/t-BuONa/Cs2CO3/benzoquinone in toluene, 2-butenylquinazolin-4(3H)-ones undergo intramolecular aza-Wacker cyclization to give methylene-substituted pyrrolo(pyrido)[2,1-b]quinazolinones. The latter catalytic system is also efficient in the reaction of pentenyl(hexenyl)quinazolin-4(3H)-ones but, in these cases, the aminopalladation of C-H multiple bonds significantly competed with allylic C(sp3)-H bond activation which leads to hitherto unknown vinyl-substituted pyrrolo(pyrido)[2,1-b]quinazolinones.

2.
Chem Heterocycl Compd (N Y) ; 58(12): 661-680, 2022.
Article in English | MEDLINE | ID: mdl-36687505

ABSTRACT

The review summarizes and systematizes the literature data on the synthesis and some aspects of application of pyrrolo[1,2-a]imidazoles. Synthetic approaches are grouped according to the degree of saturation of the product pyrroloimidazole ring. The bibliography of the review includes 110 sources over the last 15 years.

3.
Beilstein J Org Chem ; 17: 2787-2794, 2021.
Article in English | MEDLINE | ID: mdl-34900009

ABSTRACT

A regioselective method for the synthesis of 1-(hydroxymethyl)-2,3-dihydropyrrolo[1,2-a]quinazolin-5(1H)-ones - close structural analogs of naturally occurring vasicinone alkaloids - is described. The procedure is based on PIFA-initiated oxidative 5-exo-trig cyclization of 2-(3-butenyl)quinazolin-4(3Н)-ones, in turn prepared by thermal cyclocondensation of the corresponding 2-(pent-4-enamido)benzamides. The products obtained have a good natural product likeness (NPL) score and therefore can be useful for the design of natural product-like compound libraries.

4.
Beilstein J Org Chem ; 16: 2304-2313, 2020.
Article in English | MEDLINE | ID: mdl-33014170

ABSTRACT

The Chan-Evans-Lam reaction of 1-unsubstituted 4-fluoroalkylpyrimidin-2(1Н)-ones with arylboronic acids is reported as a facile synthetic route to hitherto unavailable N1-(het)aryl and N1-alkenyl derivatives of the corresponding pyrimidines. An efficient C-N bond-forming process is also observed by using boronic acid pinacol esters as coupling partners in the presence of Cu(II) acetate and boric acid. The 4-fluoroalkyl group on the pyrimidine ring significantly assists in the formation of the target N1-substituted products, in contrast to the 4-methyl and 4-unsubstituted substrates which do not undergo N1-arylation under similar reaction conditions.

5.
Beilstein J Org Chem ; 13: 2617-2625, 2017.
Article in English | MEDLINE | ID: mdl-29259672

ABSTRACT

Background: Due to the high reactivity towards various C-nucleophiles, trifluoromethylketimines are known to be useful reagents for the synthesis of α-trifluoromethylated amine derivatives. However, decarboxylative reactions with malonic acid and its mono(thio)esters have been poorly investigated so far despite the potential to become a convenient route to ß-trifluoromethyl-ß-amino acid derivatives and to their partially saturated heterocyclic analogues. Results: In this paper we show that 4-trifluoromethylpyrimidin-2(1H)-ones, unique heterocyclic ketimines, react with malonic acid under organic base catalysis to regioselectively provide either Michael- or Mannich-type decarboxylative addition products depending on solvent polarity. Malonic mono(thio)esters give exclusively Michael-type products. The two regioisomeric products can be converted into saturated (2-oxohexahydropyrimidin-4-yl)acetic acid derivatives by mild hydrogenation of the endocyclic C=C double bond in the presence of Pd/C as catalyst. The cis-stereoisomers selectively formed upon reduction of the Michael-type products were structurally determined by X-ray diffraction. As a result of this study, a number of novel acetic acid derivatives containing trifluoromethylated, partially or fully saturated 2-oxopyrimidine cores were prepared and characterized as promising building blocks. Conclusions: Regio- and stereoselective protocols have been developed for the synthesis of novel isomeric 4(6)-trifluoromethylated 1,2,3,4-tetrahydro- and perhydro-(2-oxopyrimidin-4-yl)acetic acid derivatives.

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