## Abstract Reaction of WX~6~ (X = Cl or Br) with O(SiMe~3~)~2~ in CH~2~Cl~2~, followed by addition of MeCN and a further equivalent of O(SiMe~3~)~2~ in CH~2~Cl~2~ gives [WO~2~X~2~(MeCN)~2~] in situ, which subsequently react with the dithioethers MeS(CH~2~)~2~SMe, __i__PrS(CH~2~)~2~S__i__Pr or 1,4‐
NMR Study of uronic acids and their complexation with molybdenum(VI) and tungsten(VI) oxoions
✍ Scribed by M. Luisa; D. Ramos; M. Madalena; M. Caldeira; Victor M.S. Gil
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 652 KB
- Volume
- 286
- Category
- Article
- ISSN
- 0008-6215
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✦ Synopsis
A multinuclear 1D and 2D NMR study of D-galacturonic and D-glucuronic acids in aqueous solution and their complexation with tungstate and molybdate ions tor variable concentration and pH conditions has been undertaken. The acids exist mainly in the pyranose forms, but complexes were detected involving the less stable a-and /3-furanose anomers as well as the a-pyranose form. Thus, NMR evidence was gathered for the formation of two 1:2 (metal-ligand) complexes of W(VI) with the furanose forms. These are stronger with D-galacturonic acid and when the /3 forms are involved. The same was found with Mo(VI), but, in addition, 2:1 complexes also form. In the case of D-galacturonic acid, three such complexes were detected, two involving the a-pyranose form, in an approximately 4C t and a ~C 4 conformation, respectively, and the other presumably involving the /3-furanose isomer. With D-glucuronic acid, only one such complex could be characterized, involving the a-pyranose isomer in a distorted ~C 4 conformation. More detailed information on the structure of the various complexes was obtained from ~H, J3C, ~70, 95Mo, and 183W NMR data. The 2:1 complexes with the a-pyranose forms, insofar as they involve metal binding to the ring oxygen atom, are considered to play an important role in the oxidation of the acids especially by Mo(VI).
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The complexes of molybdenum(W) with iminodiacctic acid (IDA), nitri)otriacetic acid (NTA) and elhylenediaminetetraacetic acid (EDTA) were investigated by means of polarographic and spectroscopic methods. The composition of the complexes was determined by the Job's method as following: JMo(VI)/iIDA;
The 'H and I3C NMR spectra of l-nitroso-2-naphthol and its disodium 3,ddisulphonate, 2-nitroso-l-naphthol and its sodium 4-sulphonate and the complexes of the sulphonated ligands with dioxouranium(VI) were recorded and analysed. The results show the nitrosonaphthols exist predominantly in the oxime
## Abstract The mono‐electronic reduction of __tris__(benzene‐1,2‐dithiolato)Mo(VI) and W(VI) complexes (ML~3~: M = Mo, W; L = S~2~C~6~H^2−^~4~, S~2~C~6~H~3~CH^2−^~3~) to their anionic forms ML^−^~3~ by L(+)‐ascorbic acid (H~2~A) has been studied in tetrahydrofurane (THF):water and THF:methanol by