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The Effect of Sodium Dodecylbenzenesulfonate (SDBS) Micelles on a Belousov-Zhabotinsky Oscillating System Catalyzed with a Tetraazamacrocyclic Copper(II) Complex

机译:十二烷基苯磺酸钠(SDBS)胶束对四氮杂大环铜(II)配合物催化的Belousov-Zhabotinsky振荡系统的影响

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This article deals with the influence of micelles of the anionic surfactant sodium dodecyl benzene sulfonate (SDBS) on the Belousov-Zhabotinsky (B-Z) oscillating reaction catalyzed by a tetraazama copper(II) complex [CuL](ClO_4)_2, an enzyme-like catalyst (L=5,7,7,12,14,14-hexamethyl- 1,4,8,11-tetraazacyclotetradeca-4,11-diene). Unlike the classical B-Z oscillator in which malonic acid is usually used as a substrate, malic acid (an intermediate in the Krebs cycle) is involved in this oscillating system. Experiments reveal that formation of the SDBS micelles markedly affects the behavior of the oscillating reaction. It is found that there is a linear relationship between the change in the oscillation amplitude (?A) and the concentration of SDBS, whereas the change in the oscillation period (?T) is linearly proportional to the SDBS concentration. The most likely mechanism that involves the formation of the SDBS micelles and the effects of the micelles on the oscillating chemical system can be rationalized by assuming that the SDBS micelles are so negatively charged that they attract more [CuL]~(3+) than [CuL]~(2+). This hypothesis was confirmed by UV/VIS spectrophotometric measurements of a constant concentration of [CuL](ClO_4)_2 in different concentrations of SDBS; as the SDBS concentration increased, the absorbance of [CuL](ClO_4)_2 increased, while the maximum absorption wavelength for [CuL](ClO_4)_2 remained at 502 nm.
机译:本文探讨了阴离子表面活性剂十二烷基苯磺酸钠(SDBS)的胶束对类酶四氮杂铜(II)络合物[CuL](ClO_4)_2催化的Belousov-Zhabotinsky(BZ)振荡反应的影响。催化剂(L = 5,7,7,12,14,14-六甲基-1,4,8,11-四氮杂环十四烷-4,11-二烯)。与通常将丙二酸用作底物的经典B-Z振荡器不同,苹果酸(克雷布斯循环中的中间体)参与了该振荡系统。实验表明,SDBS胶束的形成显着影响振荡反应的行为。发现在振荡幅度的变化(ΔA)和SDBS的浓度之间存在线性关系,而振荡周期的变化(ΔT)与SDBS的浓度线性成比例。可以假设SDBS胶束带负电以至于它们比[BS]胶束吸引更多的[CuL]〜(3+),从而可以合理地解释涉及SDBS胶束形成和胶束对振荡化学系统影响的最可能机理。 CuL]〜(2+)。通过在不同浓度的SDBS中恒定浓度的[CuL](ClO_4)_2的UV / VIS分光光度法测量证实了这一假设。随着SDBS浓度的增加,[CuL](ClO_4)_2的吸光度增加,而[CuL](ClO_4)_2的最大吸收波长保持在502 nm。

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