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Qiuling Song

Publications and source records attributed to Qiuling Song.

6 recordsLinked to original sources

Polyphenyl macrocyclic oligophenylenes.

The Diels-Alder reaction of tribenzohexadehydro[12]annulene (12) and 3,4-diphenyl-2,5-dimethylcyclopentadienone (13) at 300 degrees C gave the triple adduct 2,3,10,11,18,19-hexaphenyl-1,4,9,12,17,20-hexamethylhexa-o-phenylene (6b) in 13% yield. NMR and X-ray analysis indicated that 6b adopts a screw conformation (C2) rather than a crown conformation (C3), and computational studies seem to rule out any interconversion of the two. Palladium-catalyzed coupling of 1,2-bis(4-bromophenyl)-3,4,5,6-tetraphenylbenzene (17) and the corresponding bis(boronic acid) 18 gave a mixture of linear and cyclic oligomers of hexaphenylbenzene containing two to six hexaphenylbenzene subunits. A macrocyclic tetramer was isolated from this mixture in 5% yield, and X-ray analysis showed it to be the "supertetraphenylene" 7 (C168H112) that contains a large central cavity and packs to form highly solvated, porous crystals. The difficulties encountered in the purification of 7 led to the development of alternative, more highly selective syntheses that give the pure macrocycle more easily but in essentially the same overall yield.

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Sterically congested in-methylcyclophanes.

The crowded in-methylcyclophane 9 was prepared by condensation of 1,8,13-tris(bromomethyl)-9-methyltriptycene and 1,3,5-tris(mercaptomethyl)benzene under high dilution conditions. Oxidation of 9 gave the highly crystalline trisulfone 10, and its X-ray structure was determined. The in-methyl carbon atoms of the two independent molecules in the structure are only 2.90 and 2.87 A from the centroid of the basal aromatic ring, the closest such contacts ever observed. In addition, the C-CH3 bonds in these cyclophanes are compressed; the two independent bond distances are 1.475 and 1.495 A, significantly shorter than the ca. 1.54 A distances found in similar but uncongested molecules.

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Acyl-lithiation of olefins: formation of cyclopentenones from 1-lithio-butadienes and CO.

[reaction: see text] Intramolecular acyl-lithiation of C=C double bonds proceeds following carbonylation of 1-lithio-1,3-dienes with CO to afford 2- or 3-cyclopentenone derivatives in good to excellent yields after hydrolysis. Addition of electrophiles to the carbonylation reaction mixtures affords various multiply substituted cyclopentenones.

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Stereoselective synthesis of polysubstituted 2,5-dihydrofurans from reaction of 1,4-dilithio-1,3-dienes with aldehydes.

[reaction: see text] Reaction of 1,4-dilithio-1,3-diene derivatives with 2 equiv of aldehydes affords polysubstituted 2,5-dihydrofurans in good to high yields with perfect regio- and stereoselectivities. Hexa-2,4-diene-1,6-dialcoholates are proposed as the first intermediates, which undergo a cyclization and subsequent elimination of Li(2)O to generate the 2,5-dihydrofuran derivatives.

Biological Factors↗

Novel cycloaddition of nitriles with monolithio- and dilithiobutadienes.

Two novel and synthetically useful reaction patterns of organolithium compounds with nitriles are reported to afford pyridine derivatives as the final products. Both 1-lithio-1,3-dienes and 1,4-dilithio-1,3-dienes, which can be easily generated in situ by lithiation of their corresponding iodo compounds, react with nitriles in the presence of HMPA to form substituted pyridines including 2,2'-bipyridines and tetrahydroisoquinolines in high yields.

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