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钌催化的贝洛索夫-扎博廷斯基反应中的脱敏效应。

Desensitization effects in the ruthenium-catalyzed Belousov-Zhabotinsky reaction.

作者信息

Cassidy Iris, Müller Stefan C

机构信息

Institut für Experimentelle Physik, Otto-von-Guericke-Universität Magdeburg, D-39106 Magdeburg, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Aug;74(2 Pt 2):026206. doi: 10.1103/PhysRevE.74.026206. Epub 2006 Aug 16.

Abstract

The influence of visible light on the velocities of spiral waves in the Ru(bpy)(2+) -catalyzed Belousov-Zhabotinsky (BZ) reaction is well documented. However, there are only few reports showing the effect of the way a change in the applied intensity is made, or on "desensitization" or "memory" type phenomena. In this paper, we present observations showing significant changes in spiral tip dynamics without varying the light intensity during the course of the experiments. We produce further evidence showing that changes in wave velocity and inhibitory effects are depending on whether the increase in intensity is applied in one large step or in a number of smaller steps. Also, the tip trajectories before and after the spiral waves have been subjected to an increase and subsequent decrease in intensity levels are different, suggesting a change in excitation of the system. The experimental results are separated into two groups depending on the light sensitivity of the system and the behavior of the spiral tip. Simulation results demonstrate that the different tip trajectories observed in the experiments can be modeled by only varying the excitation threshold. Our observations indicate that there must be at least two different competing pathways for the reaction mechanism not only in the oscillatory BZ system but also in excitable media and that intermediates may also play an important part in determining the excitation of the system and not just the initial concentrations of the reactants.

摘要

可见光对Ru(bpy)(2+)催化的贝洛索夫-扎博廷斯基(BZ)反应中螺旋波速度的影响已有充分记录。然而,仅有少数报告显示了施加强度变化方式的影响,或对“脱敏”或“记忆”型现象的影响。在本文中,我们展示了一些观察结果,即在实验过程中不改变光强度的情况下,螺旋波尖端动力学发生了显著变化。我们进一步提供证据表明,波速变化和抑制效应取决于强度增加是在一个大步长中施加还是在多个小步长中施加。此外,螺旋波在强度水平先增加后降低之后的尖端轨迹是不同的,这表明系统的激发发生了变化。根据系统的光敏感性和螺旋波尖端的行为,实验结果分为两组。模拟结果表明,实验中观察到的不同尖端轨迹可以仅通过改变激发阈值来建模。我们的观察结果表明,不仅在振荡BZ系统中,而且在可激发介质中,反应机制必定至少存在两条不同的竞争途径,并且中间体可能在决定系统的激发方面也起着重要作用,而不仅仅是反应物的初始浓度。

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