Studies on the synthesis of spiroheterocycles and their derivatives using dimedone as synthetic precursorMajumdar, Poulomi; Mohanta, Prajna Parimita; Sahu, Sankarshan; Behera, Ajaya Kumar
doi: 10.1080/00397911.2018.1460759pmid: N/A
AbstractDiarylidene ketones 1a–c, formed by the condensation of acetone with diverse appropriate aryl aldehydes undergo Micheal reaction with dimedone to afford the desired spiro compounds 2a–c. The spirodiarylidene derivatives 3a–l on cyclisation with hydrazine, phenyl hydrazine, hydroxyl amine, urea, thiourea and guanidine carbonate furnish the respective insitu oxidized pyrazole 4a–l, phenylpyrazole 5a–l, isoxazole 6a–l, pyrimidine 7a–l, aminopyrimidine 8a–l. The antibacterial activities of the synthesized compounds have been investigated against the gram negative Escherichia coli and gram positive bacteria Staphylococcus aureus.
Condensation reactions of indole with acetophenones affording mixtures of 3,3-(1-phenylethane-1,1-diyl)bis(1H-indoles) and 1,2,3,4-tetrahydro-3-(1H-indol-3-yl)-1-methyl-1,3-diphenylcyclopent[b]indolesNoland, Wayland E.; Brown, Christopher D.; DeKruif, Rodney D.; Lanzatella, Nicholas P.; Gao, Siming M.; Zabronsky, Abigail E.; Tritch, Kenneth J.
doi: 10.1080/00397911.2018.1460760pmid: N/A
AbstractCondensation of indole 1a with eight acetophenones 8a–h in ethanolic HCl afforded the corresponding mixtures of condensation products: 3,3-(1-phenylethane-1,1-diyl)bis(1H-indoles) 11a–h (2:1 condensation of indole:acetophenone, –H2O) and diastereomers of substituted 1,2,3,4-tetrahydro-3-(1H-indol-3-yl)-1-methyl-1,3-diphenylcyclopent[b]indoles 12a–h and 13a–h (2:2 condensation of indole:acetophenone, –2H2O). Each mixture was analyzed by 1H NMR. The use of substituted electron-withdrawing acetophenones favored formation of 2:1 condensation products, whereas the use of substituted electron-donating acetophenones favored formation of 2:2 condensation products. Increased reaction temperature gave higher 2:2 condensation yields, but temperatures above 40 °C were unfavorable, giving complex, tarry mixtures.
Synthesis of 9-geranylterpinolene as a mixture of isomers, and synthesis of α- and β-springene, possible kairomones of the beech leaf-mining weevil, Orchestes fagi (L.)Mayo, P. D.; Silk, P. J.; Abeysekera, S. D.; MaGee, D. I.
doi: 10.1080/00397911.2018.1463544pmid: N/A
AbstractThe beech leaf-mining weevil, Orchestes fagi (L.), also known as the beech flea weevil, is a common and widespread pest of beech, Fagus sylvatica L., in its native Europe. It now appears to be well established in Nova Scotia, Canada. We have previously reported the synthesis of 9-geranyl-p-cymene and 9-geranyl-α-terpinene, as they are both found in eclosing beech buds, and have researched the synthesis of other diterpenes that are isomers of 9-geranyl-α-terpinene. We now wish to report a synthesis of the diterpene 9-geranylterpinolene as a mixture of isomers, as a novel diterpene, and as a possible kairomone of O. fagi. Also, all trans-α-springene, its 3Z-isomer, and β-springene were synthesized as a mixture, as well as pure β-springene, utilizing known methods.
Preparation of bicyclic β-lactam and bicyclic 1,3-oxazinone scaffolds using combined cycloaddition and metathesis processesZakaszewska, Anna; Najda-Mocarska, Ewelina; Makowiec, Sławomir
doi: 10.1080/00397911.2018.1465980pmid: N/A
AbstractA simple, efficient two-step method for the preparation of heterobicyclic compounds was developed. Starting from 5-acyl or 5-carbamoyl-2,2-dimethyl-1,3-dioxa-4,5-dione bicyclic scaffolds of 1-azabicyclo[5.2.0]non-3-en-9-one, 6,9,10,10a-tetrahydro-4H-[1,3]oxazino[3,2-a]azepin-4-one, and 6,9,10,10a-tetrahydro-2H-[1,3]oxazino[3,2-a]azepine-2,4(3H)-dione were prepared using cycloaddition of thermally generated ketenes to aldimines with unsaturated side chains, followed by metathesis. The method was applied to ring closing metathesis (RCM) of different heterocyclic substrates to demonstrate its versatility.
A three component one-pot synthesis of N-amino-2-pyridone derivatives catalyzed by KF-Al2O3Kshiar, B.; Shangpliang, O. R.; Myrboh, B.
doi: 10.1080/00397911.2018.1468467pmid: N/A
AbstractSynthesis of 1,6-diamino-4-phenyl-3,5-dicyano-2-pyridone derivatives via a one-pot, three-component reaction of aryl aldehydes, malononitrile, and cyanoacetic hydrazide at room temperature using KF-Al2O3 as a recyclable catalyst have been developed. The reaction proceeds through the initial Knoevenagel condensation between aldehyde and malononitrile in the presence of KF-Al2O3 to form the benzylidene derivative which then undergoes Michael addition with cyanoacetic hydrazide followed by intramolecular cyclization of the resulting intermediate to produce the N-amino-2-pyridones in good to excellent yields. The structure of the synthesized compounds were characterized and established on the basis of their spectral data analysis and single-crystal XRD analysis.