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Organic-water interfacial synthesis of alpha-tetralone using nickel-tetraethylenepentamine complex catalysts

机译:镍-四亚乙基五胺络合物催化剂用于有机-水界面合成α-四氢萘酮

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摘要

Biphasic autoxidation of tetralin to alpha-tetralone has been carried out using surface-active ligand complexes of nickel as catalysts, tetralin as the substrate and organic phase, and dodecyl sodium sulfate as an emulsifier. The major products formed under the mild reaction conditions of 60 degrees C acid 1 atm were alpha-tetralone and alpha-tetralol, and the highest selectivity of 71% to the preferred product alpha-tetralone was obtained with nickel-tetraethylenepentamine complex, Depending on the ligand used, ligand to catalyst ratio of 2:1 or 1:1 was optimum accelerating the reaction rate and phase separation. The organic-water phase volume ratio around which the maximum reaction rate was obtained varied somewhat with the ligand used in the reaction, but generally 1 : 1 or 2:1 was adequate, The reaction order with respect to oxygen shifted from first to zero as its partial pressure increased and the reaction order with respect to nickel catalyst concentration varied from 1.7 to 1, and subsequently to 0 with further increases in the metal concentration. A kinetic model based on a free radical mechanism is proposed which yields a rate law in accord with the experimental findings. (C) 1998 Academic Press. [References: 14]
机译:已经使用镍的表面活性配体络合物作为催化剂,以四氢化萘为底物和有机相,以及十二烷基硫酸钠为乳化剂,将四氢化萘双相自氧化为α-四氢萘酮。在60°C酸性1 atm的温和反应条件下形成的主要产物为α-四氢萘酮和α-四氢萘酚,使用镍-四亚乙基五胺络合物可获得对优选产物α-四氢萘酮的最高选择性为71%。所使用的配体,配体与催化剂的比例为2:1或1:1是最佳的,可加快反应速率和相分离。获得最大反应速率的有机水相体积比随反应中使用的配体的不同而有所变化,但通常为1:1或2:1是足够的。其分压增加,并且相对于镍催化剂浓度的反应顺序从1.7改变为1,随后随着金属浓度的进一步增加而改变为0。提出了一种基于自由基机理的动力学模型,其动力学模型与实验结果相符。 (C)1998年学术出版社。 [参考:14]

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