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- W2078227142 abstract "Abstract The migration of coordinated Pt II in the adenine ring was studied in basic aqueous solutions for the isomeric bis(9‐methyladenine) complexes: cis ‐[Pt(NH 3 ) 2 (9‐made‐N7) 2 ] 2+ ( 1 ) and cis ‐[Pt(NH 3 ) 2 (9‐made‐N1)(9‐made‐N7)] 2+ ( 2 ). In both compounds, coordinated Pt II migrates from the endocyclic nitrogen N(7) or N(1), respectively, to the exocyclic amino group, upon displacement of an NH 2 proton, to give the same first‐generation product, viz. cis ‐[Pt(NH 3 ) 2 (9‐made‐N6)(9‐made‐N7)] 2+ ( 3 ). Although both reactions undergo an intramolecular reaction, the N(1)⇄N(6) step is faster and far more efficient than the N(7)⇄N(6) step. This may be attributed to the more favorable electronic effects and to the spatial positioning of the N(1)‐bound Pt II in comparison to the platinum coordinated to the N(7) site. However, the contribution of a Dimroth‐type rearrangement to the overall N(1)⇄N(6) conversion cannot be completely ruled out. Attempts to obtain second migration in the N(6),N(7)‐bound species to give the N(6),N(6) species were unsuccessful. Rather, prolonged treatment of the N(6),N(7)‐bound complex in strongly basic solution resulted in the deamination of the N(7)‐bound 9‐methyladenine yielding a mixed ligand complex consisting of N(6)‐bound 9‐methyladenine and N(7)‐bound 9‐methylhypoxanthine, i.e. cis ‐[Pt(NH 3 ) 2 (9‐made‐N6)(9‐mhyp‐N7)] 2+ ( 4 ). To the best of our knowledge, this is the first example of such a deamination reaction in Pt II complexes. Both reaction products, 3 and 4 , were characterized by 1 H and 195 Pt NMR spectroscopy and by X‐ray crystallography of the diperchlorate. In dicationic 3 and 4 , the N(6)‐bound 9‐made exists in the rare imino tautomer with the N(1) site bearing a proton. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2003)" @default.
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- W2078227142 date "2003-11-26" @default.
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- W2078227142 title "Platinum−Nitrogen Bond Rearrangements in Isomeric <i>cis</i> ‐Pt <sup>II</sup> (NH <sub>3</sub> ) <sub>2</sub> ‐bis(9‐methyladenine) Complexes under Alkaline Conditions" @default.
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- W2078227142 doi "https://doi.org/10.1002/ejic.200300365" @default.
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