Tin heterocycles some phenoxastannin and phenothiastannin derivatives

10,10-Dialkylphenoxastannins, the first examples of heterocycles containing the CSnC linkage and oxygen in the ring, were obtained in low yield from the reaction of 2,2′-dilithiodiphenyl ether (I) with dialkyltin dichlorides and, in higher yield, from the reaction of 10,10-dichlorophenoxastannin (...

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Published inJournal of organometallic chemistry Vol. 10; no. 2; pp. 269 - 278
Main Authors Kupchik, Eugene J., Ursino, Joseph A., Boudjouk, Philip R.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 1967
Online AccessGet full text
ISSN0022-328X
1872-8561
DOI10.1016/S0022-328X(00)93086-9

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Abstract 10,10-Dialkylphenoxastannins, the first examples of heterocycles containing the CSnC linkage and oxygen in the ring, were obtained in low yield from the reaction of 2,2′-dilithiodiphenyl ether (I) with dialkyltin dichlorides and, in higher yield, from the reaction of 10,10-dichlorophenoxastannin (III) with organolithium reagents or Grignard reagents. 10,10-Diphenylphenoxastannin could only be obtained by the organolithium and Grignard route. (III) was prepared in high yield by allowing 10,10′-spirobiphenoxastannin (II) to react with stannic chloride. The reaction of (I) with stannic chloride gave three products: (II), tetrakis( o-phenoxyphenyl)tin, and a novel twelve-membered ring heterocycle containing two tin atoms in the ring (VIII). The reaction of (VIII) with stannic chloride gave a high yield of (III). The first examples of heterocycles containing the CSnC linkage and sulfur in the ring were obtained by allowing 2,2′-dilithiodiphenyl sulfone to react with diorganotin dichlorides and stannic chloride. Infrared, far infrared, ultraviolet, and NMR data are reported for the new heterocycles.
AbstractList 10,10-Dialkylphenoxastannins, the first examples of heterocycles containing the CSnC linkage and oxygen in the ring, were obtained in low yield from the reaction of 2,2′-dilithiodiphenyl ether (I) with dialkyltin dichlorides and, in higher yield, from the reaction of 10,10-dichlorophenoxastannin (III) with organolithium reagents or Grignard reagents. 10,10-Diphenylphenoxastannin could only be obtained by the organolithium and Grignard route. (III) was prepared in high yield by allowing 10,10′-spirobiphenoxastannin (II) to react with stannic chloride. The reaction of (I) with stannic chloride gave three products: (II), tetrakis( o-phenoxyphenyl)tin, and a novel twelve-membered ring heterocycle containing two tin atoms in the ring (VIII). The reaction of (VIII) with stannic chloride gave a high yield of (III). The first examples of heterocycles containing the CSnC linkage and sulfur in the ring were obtained by allowing 2,2′-dilithiodiphenyl sulfone to react with diorganotin dichlorides and stannic chloride. Infrared, far infrared, ultraviolet, and NMR data are reported for the new heterocycles.
Author Ursino, Joseph A.
Kupchik, Eugene J.
Boudjouk, Philip R.
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