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二氧化硫脲-溴酸盐底物消耗型时钟反应中兰多尔特时间的精确浓度依赖性

Exact Concentration Dependence of the Landolt Time in the Thiourea Dioxide-Bromate Substrate-Depletive Clock Reaction.

作者信息

Csekő György, Gao Qingyu, Takács Attila, Horváth Attila K

机构信息

College of Chemical Engineering , China University of Mining and Technology , Xuzhou 221116 , People's Republic of China.

出版信息

J Phys Chem A. 2019 May 9;123(18):3959-3968. doi: 10.1021/acs.jpca.9b02025. Epub 2019 Apr 29.

Abstract

The thiourea dioxide (TDO)-bromate reaction has been reinvestigated spectrophotometrically under acidic conditions using phosphoric acid-dihydrogen-phosphate buffer within the pH range of 1.1-1.8 at 1.0 M ionic strength adjusted by sodium perchlorate and at 25 °C. The title system shows a remarkable resemblance to the classical Landolt reaction, namely, the clock species (bromine) may only appear after the substrate TDO is completely consumed. Thus, the title system can be classified as substrate-depletive clock reaction. Despite the well-known slow rearrangement characteristic of TDO in acidic solution, it is surprisingly found that the Landolt time of the title reaction does not depend at all on the age of TDO solution applied. It is, however, shown experimentally that the inverse of Landolt time linearly depends on the initial bromate concentration as well as on the square of the hydrogen ion concentration. In addition to this, it is also noticed that dihydrogen phosphate markedly affects the Landolt time as well, and this feature may easily be taken into consideration by the HPO dependence of the rate of bromate-bromide reaction quantitatively. Based on the experiments, a simple three-step kinetic model is proposed from which a complex formula is derived to indicate the exact concentration dependence of the Landolt time.

摘要

在25℃下,使用磷酸 - 磷酸二氢盐缓冲液,在高氯酸钠调节的1.0 M离子强度、pH范围为1.1 - 1.8的酸性条件下,通过分光光度法对二氧化硫脲(TDO) - 溴酸盐反应进行了重新研究。该标题体系与经典的兰多尔特反应有显著相似之处,即计时物质(溴)仅在底物TDO完全消耗后才会出现。因此,该标题体系可归类为底物耗尽型时钟反应。尽管TDO在酸性溶液中具有众所周知的缓慢重排特性,但令人惊讶的是,发现该标题反应的兰多尔特时间完全不取决于所用TDO溶液的陈化时间。然而,实验表明,兰多尔特时间的倒数与初始溴酸盐浓度以及氢离子浓度的平方呈线性关系。除此之外,还注意到磷酸二氢盐也对兰多尔特时间有显著影响,并且通过溴酸盐 - 溴化物反应速率对HPO的依赖性可以很容易地定量考虑这一特征。基于实验,提出了一个简单的三步动力学模型,并由此推导出一个复杂的公式来表明兰多尔特时间的确切浓度依赖性。

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