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首页> 外文期刊>Journal of Dispersion Science and Technology >Hydrolysis of BNPP catalyzed by the crowned Schiff base Co(II) complex containing benzoaza-15-crown-5 in micellar solution
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Hydrolysis of BNPP catalyzed by the crowned Schiff base Co(II) complex containing benzoaza-15-crown-5 in micellar solution

机译:冠状席夫碱Co(II)配合物在胶束溶液中的冠状席夫碱Co(II)配合物催化水解BNPP。

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摘要

It has been reported that three aza crowned Schiff base cobalt Q complexes were synthesized and characterized, and the metallomicelle made up of the cobalt (H) complexes and surfactants(Brij35, CTAB, LSS), as mimic hydrolytic metalloenzyme, was used in catalytic hydrolysis of bis(4-nitrophenyl) phosphate (BNPP). The analysis of specific absorption spectrums of the hydrolytic reaction systems indicated that key intermediates made up of BNPP and Co (H) complexes are formed in the reaction process of BNPP catalytic hydrolysis. The mechanism of BNPP catalytic hydrolysis proposed is based on the analytic result of specific absorption spectra. Based on the mechanism proposed, a kinetic mathematical model for the calculation of the kinetic parameter of BNPP catalytic hydrolysis has been established. The acid effect of reaction system, structure effect of the complexes, effect of temperature and effect of micelles on the rate of BNPP hydrolysis catalyzed by the complexes have been discussed.
机译:据报道,合成并表征了三种氮杂冠冕席夫碱钴Q配合物,并采用由钴(H)配合物和表面活性剂(Brij35,CTAB,LSS)作为模拟水解金属酶的金属胶束进行催化水解。二(4-硝基苯基)磷酸酯(BNPP)。水解反应体系的比吸收光谱分析表明,由BNPP和Co(H)配合物组成的关键中间体是在BNPP催化水解反应过程中形成的。提出的BNPP催化水解机理是基于比吸收光谱的分析结果。基于提出的机理,建立了计算BNPP催化水解动力学参数的动力学数学模型。讨论了反应体系的酸作用,配合物的结构效应,温度的影响和胶束对配合物催化BNPP水解速率的影响。

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