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利用络合和沉淀平衡进行化学振荡器的系统设计。

Systematic design of chemical oscillators using complexation and precipitation equilibria.

作者信息

Kurin-Csörgei Krisztina, Epstein Irving R, Orbán Miklós

机构信息

Department of Inorganic and Analytical Chemistry, L. Eötvös University, H-1518 Budapest 112, PO Box 32, Hungary.

出版信息

Nature. 2005 Jan 13;433(7022):139-42. doi: 10.1038/nature03214.

Abstract

Concentration oscillations are ubiquitous in living systems, where they involve a wide range of chemical species. In contrast, early in vitro chemical oscillators were all derived from two accidentally discovered reactions based on oxyhalogen chemistry. Over the past 25 years, the use of a systematic design algorithm, in which a slow feedback reaction periodically drives a bistable system in a flow reactor between its two steady states, has increased the list of oscillating chemical reactions to dozens of systems. But these oscillating reactions are still confined to a handful of elements that possess multiple stable oxidation states: halogens, sulphur and some transition metals. Here we show that linking a 'core' oscillator to a complexation or precipitation equilibrium can induce concentration oscillations in a species participating in the equilibrium. We use this method to design systems that produce periodic pulses of calcium, aluminium or fluoride ions. The ability to generate oscillations in elements possessing only a single stable oxidation state (for example, Na+, F-, Ca2+) may lead to reactions that are useful for coupling to or probing living systems, or that help us to understand new mechanisms by which periodic behaviour may arise.

摘要

浓度振荡在生命系统中普遍存在,涉及多种化学物质。相比之下,早期的体外化学振荡器均源自基于卤氧化物化学的两个偶然发现的反应。在过去25年里,一种系统设计算法的应用增加了振荡化学反应的种类,如今已有数十种系统。该算法利用一个缓慢的反馈反应,周期性地驱动流动反应器中的双稳态系统在其两个稳态之间转换。但这些振荡反应仍局限于少数具有多个稳定氧化态的元素:卤素、硫和一些过渡金属。在此,我们表明将一个“核心”振荡器与络合或沉淀平衡相连接,可在参与平衡的物种中诱导浓度振荡。我们利用这种方法设计出能产生钙、铝或氟离子周期性脉冲的系统。在仅具有单一稳定氧化态的元素(如Na+、F-、Ca2+)中产生振荡的能力,可能会引发一些反应,这些反应对于与生命系统耦合或探测生命系统很有用,或者有助于我们理解周期性行为产生的新机制。

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