Pokutsa Alexander, Bloniarz Pawel, Fliunt Orest, Kubaj Yuliya, Zaborovskyi Andriy, Paczeŝniak Tomasz
Department of Physical Chemistry of Fossil Fuels, Institute of Physical Organic Chemistry and Chemistry of Coal NAS of Ukraine Naukova Str., 3A Lviv 79060 Ukraine
Rzeszow University of Technology P. O. Box 85 35-959 Rzeszow Poland
RSC Adv. 2020 Mar 17;10(18):10959-10971. doi: 10.1039/d0ra00495b. eCollection 2020 Mar 11.
Cyclohexane oxidation by HO to cyclohexanol, cyclohexanone, and cyclohexylhydroperoxide under mild (40 °C, 1 atm) conditions is significantly enhanced in the system composed of VO(acac) (starting catalyst) and small additives of oxalic acid (process promoter). In corroboration of this, several times higher yield of the desired products was obtained compared to that obtained in the acid-free process. The revealed advantage was addressed to elevate the electrical conductance (or , decreasing the resistance, 1/) of the reaction medium. On the other hand, the content of oxalic acid (20-30 mM) was compulsory to optimize the process parameters. The last value of concentration affords, besides the lowest 1/, the utmost impact on pH, redox potential, and current-voltage relationships. Exceeding this level leads to an increase in 1/ of the reaction solution, ceases the impact on pH, ORP, and CV profiles, and is detrimental for the product yield. The putative mechanism of the revealed effects has been envisaged.
在温和条件(40°C,1个大气压)下,由VO(acac)(起始催化剂)和少量草酸添加剂(过程促进剂)组成的体系中,HO将环己烷氧化为环己醇、环己酮和环己基过氧化氢的反应显著增强。与此相符的是,与无酸过程相比,所需产物的产率提高了数倍。所揭示的优势归因于提高了反应介质的电导率(或降低电阻,1/)。另一方面,草酸含量(20 - 30 mM)对于优化工艺参数是必不可少的。除了最低的1/外,该浓度的最终值对pH、氧化还原电位和电流 - 电压关系有最大影响。超过此水平会导致反应溶液的1/增加,停止对pH、氧化还原电位和循环伏安曲线的影响,并且对产物产率不利。已经设想了所揭示效应的假定机制。