1977
DOI: 10.1016/s0022-328x(00)84300-4
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Organotin derivatives of (arylazo)benzoic acids

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1983
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Cited by 8 publications
(2 citation statements)
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“…Their U.V. spectra recorded in non-polar solvents exhibit large bathochromic shifts indicative of N+Sn co-ordination and structure (1; R' = aryl), but which is absent in co-ordinating solvents as the weak N+Sn bond is replaced by a donor solvent molecule (solv) as in (2). Further, when the aryl group contains a donor group in the ortho position, the arylazobenzoato-group was postulated to function as a terdentate ligand, giving rise to structure (3).…”
mentioning
confidence: 99%
“…Their U.V. spectra recorded in non-polar solvents exhibit large bathochromic shifts indicative of N+Sn co-ordination and structure (1; R' = aryl), but which is absent in co-ordinating solvents as the weak N+Sn bond is replaced by a donor solvent molecule (solv) as in (2). Further, when the aryl group contains a donor group in the ortho position, the arylazobenzoato-group was postulated to function as a terdentate ligand, giving rise to structure (3).…”
mentioning
confidence: 99%
“…where R = ZIIF0I -IFCII / ZIF0I and R w = [Iw(IF0l -IFCI)2 / ZwF0 2 ]In the IR spectrum of {Ph3Sn[02CC 6 H4(N = N(C6H3-4-OH-5-CHO))-o]OH 2 } the asymmetric carbonyl stretch is found at 1647 cm" 1 compared wnth 1733 cm" 1 for the uncoordinated 5-(2'-carboxyphenylazo)salicylaldehyde (hereafter LH); this result is typical for Sn-0 coordination in arylazobenzoates[15]. The 1 H NMR spectrum showed the expected resonances and integration for the formulation of the compound.…”
mentioning
confidence: 99%