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首页> 外文期刊>Chemistry: A European journal >Mechanistic Study of the Palladium–Phenanthroline Catalyzed Carbonylation of Nitroarenes and Amines: Palladium–Carbonyl Intermediates and Bifunctional Effects
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Mechanistic Study of the Palladium–Phenanthroline Catalyzed Carbonylation of Nitroarenes and Amines: Palladium–Carbonyl Intermediates and Bifunctional Effects

机译:钯-菲咯啉催化硝基芳烃和胺羰基化的机理研究:钯-羰基中间体和双功能效应

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Palladium–phenanthroline complexes catalyze both the nitroarene carbonylation reaction and the amine oxidative carbonylation reaction to give, depending on the conditions, carbamates and ureas. There is evidence that the key step in both processes is the amine carbonylation. Here, we show that when the reaction is run in methanol key intermediate compounds have the general formula [Pd(RPhen)- (COOMe)_2] (1) (RPhen=1,10-phenanthroline or one of its substituted derivatives). The kinetics of the reaction of 1 with toluidine in the presence of a carboxylic or phosphorus acid is firstorder with respect to complex, acid, and toluidine. A CO atmosphere is also required for the reaction to proceed. Acid dimerization was shown not to be influential under the concentration conditions examined, but reaction between the acid and toluidine is not negligible and a correction has to be applied. Diphenylphosphinic acid is more effective than any carboxylic acid in promoting this reaction, as also observed under catalytic conditions. A series of equilibria and an irreversible acid-assisted proton transfer explain the observed data. Formation of an adduct between complexes of the kind 1 and CO was spectroscopically observed when RPhen=2,9-Me_2Phen. Several analogous complexes were also spectroscopically characterized and the X-ray structure of [Pd(2,9- Me_2Phen)Cl_2(CO)] was solved. This shows an asymmetric coordination of the nitrogen ligand. Kinetic measurements were also conducted under catalytic conditions. An Eyring plot shows that the effect of the acidic promoter is to decrease the △S~≠ value, whereas no positive effect is observed on △H~≠. A temperature-dependent correction for the reaction between the acid and aniline and phenanthroline present under the reaction conditions has to be applied. Comparison of the results obtained under stoichiometric and catalytic conditions strongly supports the view that 1 is involved even in the latter and that the acid is acting as a bifunctional promoter.
机译:钯-菲咯啉配合物既催化硝基芳烃的羰基化反应,又催化胺氧化的羰基化反应,从而根据条件生成氨基甲酸酯和脲。有证据表明,这两个过程的关键步骤都是胺的羰基化。在这里,我们表明当反应在甲醇中进行时,关键中间体化合物的通式为[Pd(RPhen)-(COOMe)_2](1)(RPhen = 1,10-菲咯啉或其取代衍生物之一)。相对于配合物,酸和甲苯胺,在羧酸或磷酸存在下1与甲苯胺反应的动力学是一级的。为了进行反应,还需要CO气氛。在所考察的浓度条件下,表明酸二聚化没有影响,但是酸和甲苯胺之间的反应不可忽略,必须进行校正。在催化条件下也观察到,二苯基次膦酸在促进该反应方面比任何羧酸更有效。一系列的平衡和不可逆的酸辅助质子转移解释了观察到的数据。当RPhen = 2,9-Me_2Phen时,在光谱上观察到在类型1和CO的配合物之间形成加合物。还对几种类似的配合物进行了光谱表征,并解析了[Pd(2,9-Me_2Phen)Cl_2(CO)]的X射线结构。这表明氮配体的不对称配位。动力学测量也在催化条件下进行。艾尔环图表明,酸性助催化剂的作用是降低△S〜≠值,而对△H〜≠没有发现正作用。必须对反应条件下存在的酸与苯胺和菲咯啉之间的反应进行温度依赖性校正。在化学计量和催化条件下获得的结果的比较有力地支持了一种观点,即甚至在后者中也涉及1,并且该酸起着双官能促进剂的作用。

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