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Synthesis, spectroscopic characterization, and in vitro biological activity of organotin(IV) complexes of (E)-3-(4-methoxyphenyl)-2-phenyl-2-propenoic acid

โœ Scribed by Sadiq-ur-Rehman; Khadija Shahid; Saqib Ali; Mohammad Mazhar; Amin Badshah; George Eng; Xueqing Song; Janusz Ryczkowski


Publisher
John Wiley and Sons
Year
2005
Tongue
English
Weight
123 KB
Volume
16
Category
Article
ISSN
1042-7163

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โœฆ Synopsis


Abstract

Organotin(IV) complexes with general formula R~4 โˆ’ n~SnL~n~ have been synthesized by the reaction of triโ€ and diorganotin chlorides with sodium salt of (E)โ€3โ€(4โ€methoxyphenyl)โ€2โ€phenylโ€2โ€propenoic acid in dry toluene, where R๏ฃฟCH~3~, C~2~H~5~, nโ€C~4~H~9~, C~6~H~5~, n = 1 or 2, and L = [ลŒOCC(C~6~H~5~) CH(C~6~H~4~OCH~3~)]. Dimeric distannoxanes, [(R~2~SnOOCC(C~6~H~5~)CHโ€(C~6~H~4~OCH~3~)~2~O]~2~, were synthesized by the reaction of acid with diorganotin oxides in 1:1 molar ratio. Multinuclear NMR (^1^H, ^13^C, ^119^Sn), infrared, mass, and Mรถssbauer spectral techniques have been used to ascertain their structures in solution and as solid. The spectroscopic results showed that triorganotin(IV) derivatives are 4โ€coordinated monomers in noncoordinating solvents and 5โ€coordinated polymers with bridging carboxylate groups in the solid state. However, diorganotin and dimeric compounds are 5โ€coordinated in noncoordinating solvents while in the solid phase may have higher coordination. Biological screening tests showed that most of the compounds have significant activity against different bacteria and fungi. ยฉ 2005 Wiley Periodicals, Inc. Heteroatom Chem 16:175โ€“222, 2005; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/hc.20089


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