...
首页> 外文期刊>The Journal of Chemical Physics >Solute size effects on the solvation structure and diffusion of ions in liquid methanol under normal and cold conditions
【24h】

Solute size effects on the solvation structure and diffusion of ions in liquid methanol under normal and cold conditions

机译:在正常和寒冷条件下,溶质尺寸对液体甲醇中溶剂化结构和离子扩散的影响

获取原文
获取原文并翻译 | 示例
           

摘要

We have performed a series of molecular dynamics simulations of alkali metal (Li~+,Na~+,K~+,Rb~+,and Cs~+) and halide (F~-,Cl~-,Br~-,and I~-) ions in liquid methanol at two different temperatures to investigate the effects of ion size on the hydration structure and diffusion of ions in methanol under normal and cold conditions.Simulations are also carried out for some of the larger cations such as I~+,(CH_3)_4N~+,and (C_2H_5)_4N~+ and also neutral alkali metal atoms in methanol at both temperatures.With the increase of ion size,the diffusion coefficients of both positive and negative ions are found to show anomalous behavior.For cations,it is found that the maximum of the diffusion coefficient versus ion size curve occurs at the rather large cation of (CH_3)_4N~+ unlike in water where the maximum occurs at the relatively smaller ion of Rb~+.For halide ions,the anomalous behavior,i.e.,the increase of diffusion with ion size,continues up to iodide ion and no maximum is observed.These results are in good agreement with experimental observations.The diffusion coefficients of neutral atoms are found to be greater in methanol than that in water and they decrease monotonically with solute size,whereas the diffusion coefficients of the corresponding ions are found to be smaller in methanol.Accordingly,an ion experiences a smaller Stokes friction and a higher dielectric friction in methanol than in water.These contrasting effects are believed to be responsible for the shift of the maximum of ion diffusion toward a larger ion size when compared with similar anomalous size dependence in liquid water.
机译:我们对碱金属(Li〜+,Na〜+,K〜+,Rb〜+和Cs〜+)和卤化物(F〜-,Cl〜-,Br〜-和在两种不同温度下在液态甲醇中的I〜-)离子,以研究离子大小对正常和寒冷条件下离子在甲醇中的水化结构和扩散的影响。还对一些较大的阳离子(例如I〜在两个温度下,甲醇中的+,(CH_3)_4N〜+和(C_2H_5)_4N〜+以及中性碱金属原子。随着离子尺寸的增加,发现正离子和负离子的扩散系数都显示出异常行为对于阳离子,发现扩散系数与离子尺寸曲线的最大值出现在(CH_3)_4N〜+相当大的阳离子上,而在水中,最大值出现在相对较小的Rb〜+离子上。离子,其异常行为,即扩散随离子尺寸的增加而增加,直至碘离子,并且未观察到最大值。结果发现,中性原子在甲醇中的扩散系数大于在水中的扩散系数,并且随溶质的大小单调降低,而在甲醇中,相应离子的扩散系数较小。因此,与水相比,在甲醇中,离子在甲醇中经历的斯托克斯摩擦较小,而在水中的介电摩擦较高。当与类似的异常尺寸依赖性相比时,这些对比作用可导致最大的离子扩散朝更大的离子尺寸偏移。液态水。

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