Schuszter Gábor, Gehér-Herczegh Tünde, Szűcs Árpád, Tóth Ágota, Horváth Dezső
Department of Physical Chemistry and Materials Science, Rerrich Béla ter 1., 6720 Szeged, Hungary.
Department of Applied and Environmental Chemistry, Rerrich Béla ter 1., 6720 Szeged, Hungary.
Phys Chem Chem Phys. 2017 May 17;19(19):12136-12143. doi: 10.1039/c7cp00986k.
The role of diffusion in chemical pattern formation has been widely studied due to the great diversity of patterns emerging in reaction-diffusion systems, particularly in H-autocatalytic reactions where hydrogels are applied to avoid convection. A custom-made conductometric cell is designed to measure the effective diffusion coefficient of a pair of strong electrolytes containing sodium ions or hydrogen ions with a common anion. This together with the individual diffusion coefficient for sodium ions, obtained from PFGSE-NMR spectroscopy, allows the determination of the diffusion coefficient of hydrogen ions in hydrogels. Numerical calculations are also performed to study the behavior of a diffusion-migration model describing ionic diffusion in our system. The method we present for one particular case may be extended for various hydrogels and diffusing ions (such as hydroxide) which are relevant e.g. for the development of pH-regulated self-healing mechanisms and hydrogels used for drug delivery.
由于反应扩散系统中出现的图案种类繁多,尤其是在应用水凝胶以避免对流的H-自催化反应中,扩散在化学图案形成中的作用已得到广泛研究。设计了一种定制的电导池,用于测量一对含有钠离子或氢离子且具有共同阴离子的强电解质的有效扩散系数。这与通过脉冲场梯度自旋回波核磁共振光谱法获得的钠离子的个体扩散系数一起,使得能够确定氢离子在水凝胶中的扩散系数。还进行了数值计算,以研究描述我们系统中离子扩散的扩散-迁移模型的行为。我们针对一种特定情况提出的方法可以扩展到各种水凝胶和扩散离子(如氢氧根离子),这例如与pH调节的自愈机制的开发以及用于药物递送的水凝胶相关。