...
首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structural and Thermodynamic Properties of Electrolyte Solutions in Hard-Sphere Confinement: Predictions of the Replica Integral Equation Theory
【24h】

Structural and Thermodynamic Properties of Electrolyte Solutions in Hard-Sphere Confinement: Predictions of the Replica Integral Equation Theory

机译:硬球形约束条件下电解质溶液的结构和热力学性质:复制积分方程理论的预测

获取原文
获取原文并翻译 | 示例
           

摘要

The structural and thermodynamic properties of the primitive model for 1-1, 2-1, 3-1, and 4-1 electrolyte solutions in a disordered hard sphere matrix environment mimicking microporous adsorbent were studied. The size of he matrix species and the matrix density were chosen as in the model of silica xerogel proposed by Kaminsky and Monson. The majority of the results of our study follows from the application of the replica Ornstein-Zernike (ROZ) integral equations complemented by the hypernetted-chain (HNC) closure. Theoretical predictions were tested versus Monte Carlo computer simulation results for one of the most difficult cases studied here, i.e., for a charge and size asymmetric 3-1 electrolyte, with the parameters mimicking LaCl_3 solution. Steric effects due to matrix confinement are seen to influence substantially the equilibrium properties of the annealed electrolyte. In particular, our results show the development of a net attraction between the like-charged ions at small separations, not present in the absence of matrix. The pair distribution functions and thermodynamic properties of 3-1 electrolytes confined by the matrix were compared with data for pure electrolyte and with the results for a mixture of 3-1 electrolyte with a fully mobile neutral component. The excess chemical potential for adsorbed electrolyte in a dense uncharged matrix is close to that of the fully annealed mixture of the electrolyte and matrix species under the same conditions. We attribute this result to a large difference in size between the matrix and electrolyte particles, i.e., to low mobility of matrix particles versus the ions in the mixture. The comparison between Monte Carlo results and the replica integral equation theory for a 3-1 model electrolyte indicates the theory is successful: the ROZ/HNC approach provides reasonably accurate predictions for structural and thermodynamic properties.
机译:研究了在模拟微孔吸附剂的无序硬球基体环境中1-1、2-1、3-1和4-1电解质溶液的原始模型的结构和热力学性质。根据Kaminsky和Monson提出的硅胶干凝胶模型,选择基质种类的大小和基质密度。我们研究的大部分结果来自复制的Ornstein-Zernike(ROZ)积分方程的应用以及超网状链(HNC)闭环的补充。针对此处研究的最困难情况之一,即对于电荷和尺寸不对称的3-1电解质,其参数模拟了LaCl_3溶液,对理论预测与Monte Carlo计算机模拟结果进行了测试。可以看出,由于基质限制而产生的立体效应实质上影响了退火电解质的平衡性能。特别是,我们的结果表明,在小间距下,类似电荷的离子之间出现了净吸引,而在没有基质的情况下则不存在。将基体限定的3-1电解质的对分布函数和热力学性质与纯电解质的数据进行比较,并与3-1电解质与完全可移动的中性成分的混合物的结果进行比较。在相同条件下,致密的不带电基质中吸附的电解质的过量化学势接近于完全退火的电解质和基质物质的混合物的化学势。我们将此结果归因于基质和电解质颗粒之间的尺寸差异大,即基质颗粒相对于混合物中离子的迁移率低。蒙特卡洛结果与3-1模型电解质的复制积分方程理论之间的比较表明该理论是成功的:ROZ / HNC方法可为结构和热力学性质提供合理准确的预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号