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含甲基丙二酸和锰(II)的贝洛索夫-扎博京斯基间歇反应中的复杂振荡

Complex oscillations in the Belousov-Zhabotinsky batch reaction with methylmalonic acid and manganese(ii).

作者信息

Frerichs Glen A, Yengi Desmond

机构信息

Department of Chemistry, Westminster College 501 Westminster Ave Fulton MO 65251 USA

College of Arts and Sciences, Ohio Valley University 1 Campus View Drive Vienna WV 26105 USA.

出版信息

RSC Adv. 2021 May 4;11(27):16435-16444. doi: 10.1039/d1ra01734a. eCollection 2021 Apr 30.

Abstract

The Belousov-Zhabotinsky (BZ) oscillating chemical reaction involves the oxidation of an organic compound by the bromate ion in the presence of a metal ion catalyst such as cerium(iv), manganese(ii), or ferroin. Simple periodic oscillations are generally obtained for the BZ reaction in a batch (closed) system. However, complex oscillations have been observed for the BZ reaction in batch with malonic acid and either cerium or ferroin ions as the catalyst. We report here that fascinating complex oscillations in the potential of a Pt electrode have been found in the batch BZ reaction with methylmalonic acid (MeMA) and manganese(ii). Relatively high initial concentrations of NaBrO and MeMA are required, and the [NaBrO]/[MeMA] ratio is the main factor determining the type of oscillations obtained. Other relevant factors are [NaBr], [MnSO], [HSO] or [NaOH], temperature, and stirring rate. Complex phenomena observed include mixed mode oscillations, birhythmicity, quasiperiodicity, bursting, and possible chaos. A mechanism is proposed involving the reversible formation of a manganese(iii) complex with bromomethylmalonic acid followed by two-electron oxidation to methyltartronic acid and Mn.

摘要

别洛索夫-扎博京斯基(BZ)振荡化学反应涉及在金属离子催化剂(如铈(IV)、锰(II)或亚铁菲绕啉离子)存在下,有机化合物被溴酸根离子氧化。在间歇(封闭)系统中,BZ反应通常会产生简单的周期性振荡。然而,在以丙二酸和铈或亚铁菲绕啉离子作为催化剂的间歇BZ反应中,已观察到复杂振荡。我们在此报告,在以甲基丙二酸(MeMA)和锰(II)为反应物的间歇BZ反应中,发现了铂电极电位中迷人的复杂振荡。需要相对较高的溴酸钠和MeMA初始浓度,且[溴酸钠]/[MeMA]比值是决定所获得振荡类型的主要因素。其他相关因素包括[溴化钠]、[硫酸锰]、[硫酸]或[氢氧化钠]、温度和搅拌速率。观察到的复杂现象包括混合模式振荡、双节律性、准周期性、爆发以及可能的混沌。提出了一种机制,涉及锰(III)与溴甲基丙二酸形成可逆络合物,随后双电子氧化生成甲基酒石酸和锰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49b1/9030520/6063d7b57ebd/d1ra01734a-f1.jpg

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