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Complex Dynamics in the bromate/hypophosphite/acetone/manganese and ferroin system

机译:溴酸盐/次磷酸盐/丙酮/锰和铁蛋白体系的复杂动力学

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New chemical systems have been recently designed for the study of complex phenomena such as oscillatory dynamics in the temporal domain and spatiotemporal pattern formation. Systems derived from oscillators based on the chemistry of bromate are the most extensively studied, with the celebrated Belousov-Zhabotinsky (BZ) reaction being the most popular example. Problems such as the formation of bubbles (CO2) and solid precipitate in the course of the reaction and the occurrence of simply short-lived oscillations under batch conditions are very common and, in some cases, compromise the use of some of these systems. It is investigated in this paper the dynamic behavior of the bromate/hypophosphite/acetone/dual catalyst system, which has been sugested as an interesting alternative to circumvent those inconvenients. In this work, manganese and ferroin are employed as catalysts and the complete system (BrO3-/H2PO2 -/acetone/Mn(II)-ferroin) is studied under batch conditions. Temporal symmetry breaking was studied in a reactor under agitation by means of simultaneous records of the potential changes of platinum and Ag/AgBr electrodes, both measured versus a reversible hydrogen electrode. Additionally, spatio-temporal formation of target patterns and spiral waves were obtained when the oscillating mixture was placed in a quasi two-dimensional reactor.
机译:最近已经设计出新的化学系统用于研究复杂现象,例如时域的振荡动力学和时空模式的形成。源自基于溴酸盐化学性质的振荡器的系统得到了最广泛的研究,最著名的例子是著名的Belousov-Zhabotinsky(BZ)反应。问题非常普遍,例如在反应过程中形成气泡(CO2)和固体沉淀物,以及在间歇条件下仅发生短寿命振荡等问题,并且在某些情况下会损害其中一些系统的使用。本文研究了溴酸盐/次磷酸盐/丙酮/双催化剂体系的动力学行为,该体系被认为是避免这些不便之处的有趣替代方法。在这项工作中,使用锰和铁蛋白作为催化剂,并在间歇条件下研究了整个体系(BrO3- / H2PO2- /丙酮/ Mn(II)-铁蛋白)。通过同时记录铂电极和Ag / AgBr电极相对于可逆氢电极的电位变化,在搅拌下在反应器中研究了时间对称性断裂。另外,当将振荡混合物置于准二维反应器中时,获得了目标图案和螺旋波的时空形成。

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