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http://nopr.niscpr.res.in/handle/123456789/41498| Title: | Kinetics and mechanism of oxidation of oxovanadium(IV) by [Mn(cydta)]- complex ion: Application of the Marcus relationship in support of an outer-sphere mechanism |
| Authors: | Chandrawat, Uttra Prakash, Aditya Mehrotra, Raj N |
| Issue Date: | Nov-1996 |
| Publisher: | NISCAIR-CSIR, India |
| Abstract: | The rapid scan and the stopped-flow traces of the reaction mixture containing oxovanadium (IV) and [Mn(cydta)]- indicate the formation of intermediate complex(es). The inverse dependence of the rate on [H+] is attributed to the acidic dissociation of aquovanadium (IV) ion. Hence the intermediate complexes are formed between [VO(OH2)5]2+ and [VO(OH)(OH2)4]+ with [Mn(cydta)(OH2)]- and they decay in the rate limiting steps with rate constants kH2o and kOH respectively. The higher ratio of kOH/ kH2O 30 at 25°C , which previous workers considered to be indicative of an inner-sphere complex, perhaps, reflects the non-adiabaticity of the reaction with aquovanadium (IV) ion. The ratio is consistent with similar observations in several outer-sphere oxidations of VIV(aq) by metal complexes. The application of the Marcus relationship indicates that the reaction is better grouped with outer-sphere reactions of vanadium (IV) studied with well known outer-sphere oxidants. The values of the rate constants for the formation of the complex, and kH2O and kOH the respective rate constants for the decay of the [Mn(cydta)(OH2) ..VO(OH2)5]+ and [Mn(cydta)(OH2) ..VO(OH)(OH2)4] are reported. |
| Page(s): | 952-959 |
| ISSN: | 0975-0975(Online); 0376-4710(Print) |
| Appears in Collections: | IJC-A Vol.35A(11) [November 1996] |
Files in This Item:
| File | Description | Size | Format | |
|---|---|---|---|---|
| IJCA 35A(11) 952-959.pdf | 1.4 MB | Adobe PDF | View/Open |
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30 at 25°C , which previous workers considered to be indicative of an inner-sphere complex, perhaps, reflects the non-adiabaticity of the reaction with aquovanadium (IV) ion. The ratio is consistent with similar observations in several outer-sphere oxidations of VIV(aq) by metal complexes. The application of the Marcus relationship indicates that the reaction is better grouped with outer-sphere reactions of vanadium (IV) studied with well known outer-sphere oxidants. The values of the rate constants for the formation of the complex, and kH2O and kOH the respective rate constants for the decay of the [Mn(cydta)(OH2) ..VO(OH2)5]+ and [Mn(cydta)(OH2) ..VO(OH)(OH2)4] are reported.