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通过吸收光谱法研究亚甲蓝在冷冻水溶液中的聚集情况。

Aggregation of methylene blue in frozen aqueous solutions studied by absorption spectroscopy.

作者信息

Heger Dominik, Jirkovský Jaromír, Klán Petr

机构信息

Department of Organic Chemistry, Faculty of Science, Masaryk University, Kotlarska 2, CZ-611 37 Brno, Czech Republic.

出版信息

J Phys Chem A. 2005 Aug 4;109(30):6702-9. doi: 10.1021/jp050439j.

Abstract

The paper presents a qualitative as well as quantitative spectroscopic study of methylene blue (MB) aggregation that occurs upon freezing the aqueous solutions over a wide concentration range. The Gaussian curve analysis and the multivariate curve resolution-alternating least squares method were used to determine the number and concentration of chemical species responsible for the overlaying absorption visible spectra measured. The results show the extent of aggregation for the concentrations above 10(-7) mol L(-1), being dependent on the freezing rate and the initial concentration. While the local concentration of MB at the grain boundaries of polycrystalline ice increased by approximately 3 orders of magnitude upon fast freezing at 77 K compared to the liquid phase, the concentration raised at least by 6 orders of magnitude upon slow freezing at 243 K. Since enhancement of the local concentration of solutes plays an important role in (photo)chemical transformations in solid aqueous media, this work helps to understand how the initial conditions control the course of the process. The results are relevant in other interdisciplinary fields, such as environmental chemistry, cosmochemistry, or geochemistry.

摘要

本文对亚甲基蓝(MB)在宽浓度范围内水溶液冷冻时发生的聚集现象进行了定性和定量光谱研究。采用高斯曲线分析和多元曲线分辨交替最小二乘法来确定造成所测叠加吸收可见光谱的化学物种的数量和浓度。结果表明,浓度高于10⁻⁷ mol L⁻¹时的聚集程度取决于冷冻速率和初始浓度。与液相相比,在77 K快速冷冻时,多晶冰晶界处MB的局部浓度增加了约3个数量级,而在243 K缓慢冷冻时,浓度至少提高了6个数量级。由于溶质局部浓度的增强在固体水介质的(光)化学转化中起着重要作用,这项工作有助于理解初始条件如何控制过程的进程。这些结果在其他跨学科领域,如环境化学、宇宙化学或地球化学中具有相关性。

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