首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Formation mechanism of 2-methyl-2-buten-1,4-diol and 2-methyl-3-buten-1,2- diol from 2-methyl-1,3-butadiene on a head-to-head pivalamidato-bridged cis-diammineplatinum(III) binuclear complex
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Formation mechanism of 2-methyl-2-buten-1,4-diol and 2-methyl-3-buten-1,2- diol from 2-methyl-1,3-butadiene on a head-to-head pivalamidato-bridged cis-diammineplatinum(III) binuclear complex

机译:由2-甲基-1,3-丁二烯在对映新戊酰胺桥上形成2-甲基-2-丁烯-1,4-二醇和2-甲基-3-丁烯1,2-二醇顺二氨铂(III)双核复合物

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Reactions of a pivalamidato-bridged head-to-head (HH) platinum(iii) binuclear complex with 2-methyl-1,3-butadiene (isoprene) and p-styrenesulfonate and of an α-pyrrolidonato-bridged HH platinum(iii) binuclear complex with p-styrenesulfonate were studied kinetically using UV-vis spectrophotometry and ~1H NMR spectroscopy, and detailed reaction mechanisms are proposed. Pt(iii) binuclear complexes react with p-styrenesulfonate in four successive steps with mechanisms similar to that for an HH α-pyridonato-bridged Pt(iii) binuclear complex with p-styrenesulfonate. In the case of isoprene, four steps were observed on the basis of UV-vis spectrophotometry. However, the reaction kinetics for steps 1 and 2 correspond to those for the previous reaction system, and those for steps 3 and 4 do not correspond to those for the previous system or to those observed by using ~1H NMR spectroscopy for the present isoprene system. By using UV-vis spectrophotometry, it was shown that isoprene preferentially π-coordinates to the Pt(N_2O _2) atom via the double bond adjacent to the methyl group in step 1. In step 2, a second isoprene molecule π-coordinates to the Pt(N_4) atom, which is the rate-determining step, followed by nucleophilic attack of a water molecule on the π-coordinated isoprene on the Pt(N_2O _2) atom to form two isomeric σ-complexes. In the same step, π-coordinated isoprene on the Pt(N_4) atom of the σ-complexes is released. This is different from the reaction of the Pt(iii) binuclear complexes with other olefins. In step 3, reductive elimination of the σ-complexes occurs to form two diols and the HH pivalamidato-bridged Pt(ii) binuclear complex. Finally, acid decomposition of the Pt(ii) binuclear complex occurs to form monomers in step 4. From ~1H NMR spectroscopic observations, fast isomerization between σ-complexes and reductive elimination of the σ-complexes occurs in step 3, and isomerization from a 1,4-diol to a 1,2-diol occurs in step 4.
机译:新戊酰胺桥头对头(HH)铂(iii)双核配合物与2-甲基-1,3-丁二烯(异戊二烯)和对苯乙烯磺酸酯的反应以及α-吡咯烷酮桥连的HH铂的反应(iii)用紫外可见分光光度法和〜1H NMR光谱对双核与对苯乙烯磺酸盐的配合物进行了动力学研究,并提出了详细的反应机理。 Pt(iii)双核配合物在四个连续的步骤中与对苯乙烯磺酸盐反应,其机理与HHα-吡啶酮桥联的Pt(iii)双核配合物与对苯乙烯磺酸盐相似。在异戊二烯的情况下,基于紫外可见分光光度法观察到四个步骤。但是,第1步和第2步的反应动力学与先前反应体系的动力学相对应,第3步和第4步的动力学动力学与先前体系的反应动力学不符,对于本次异戊二烯系统使用〜1 H NMR光谱观察的反应动力学也与之不符。 。通过紫外可见分光光度法显示,异戊二烯在步骤1中优先通过与甲基相邻的双键与Pt(N_2O _2)原子配位。在步骤2中,第二异戊二烯分子π与配位体π配位。 Pt(N_4)原子是决定速率的步骤,然后水分子对Pt(N_2O _2)原子上π配位异戊二烯进行亲核攻击,形成两个异构的σ复合物。在同一步骤中,释放出σ络合物的Pt(N_4)原子上的π配位异戊二烯。这与Pt(iii)双核络合物与其他烯烃的反应不同。在步骤3中,发生σ-络合物的还原消除反应,形成了两个二醇和HH新戊酰胺桥联的Pt(ii)双核络合物。最后,在步骤4中发生Pt(ii)双核络合物的酸分解以形成单体。从〜1H NMR光谱观察,在步骤3中发生σ络合物之间的快速异构化和σ络合物的还原消除,并且从a在步骤4中将1,4-二醇转变为1,2-二醇。

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