首页> 外文期刊>The Journal of Chemical Physics >Effect of competition between Coulomb and dispersion forces on phase transitions in ionic systems
【24h】

Effect of competition between Coulomb and dispersion forces on phase transitions in ionic systems

机译:库仑力与色散力之间的竞争对离子体系中相变的影响

获取原文
获取原文并翻译 | 示例
           

摘要

A restricted primitive model (RPM) for ionic systems in which the Coulomb and hard-core interactions are supplemented with short-range (SR) interactions between all the components, including solvent particles, is introduced and studied within a mean-field approximation. Continuum-space as well as simple-cubic lattice systems are considered. A continuous and a first-order phase transition, separated by a tricritical point (tcp), are found between uniform and charge-ordered phases in all the systems considered. The position of the tcp as well as the slope of the line of the continuous transition depend on both the model and the SR interactions. For weak or vanishing SR interactions, at temperatures lower than the transition temperature, two oppositely charged sublattices are found on the simple-cubic lattice, whereas in the continuum case a lamellar structure consisting of charged layers of alternating sign occurs. For strong SR interactions the structure becomes incommensurate with the lattice in the lattice model Both on the lattice and in the continuum a transition between uniform ion-poor and ion-richphases occurs for sufficiently strong SR interactions. This critical point (scp) is not to be confused with the liquid-gas type critical point (cp) that already occurs in the continuum-space version of the RPM in the absence of SR interactions. The density at the scp is significantly higher than the density at the cp. The way this latter critical point is perturbed by the presence of SR interactions is not addressed in the analysis here. The SR interactions influence the charge ordering in such a way that the tcp can be located in the same range of densities as the stable critical point. For strong SR the tcp is located close to the scp, whereas for weak SR it is close to the cp.
机译:在平均场近似下,引入并研究了离子系统的受限原始模型(RPM),其中库仑和硬核相互作用补充了所有组分(包括溶剂颗粒)之间的短程(SR)相互作用。考虑了连续空间以及简单三次晶格系统。在所有考虑的系统中,均相和电荷有序相之间存在由三临界点(tcp)分隔的连续和一级相变。 tcp的位置以及连续过渡线的斜率取决于模型和SR相互作用。对于弱或消失的SR相互作用,在低于转变温度的温度下,在简单立方晶格上会发现两个带相反电荷的亚晶格,而在连续体情况下,会出现由交替符号的带电层组成的层状结构。对于强SR相互作用,其结构变得与晶格模型中的晶格不相称。在晶格和连续体上,均会发生均匀的离子贫相和离子富相之间的过渡,以实现足够强的SR相互作用。该临界点(scp)不应与在没有SR相互作用的情况下在RPM的连续空间版本中已经出现的液化气类型临界点(cp)混淆。 scp处的密度显着高于cp处的密度。 SR交互作用的存在会扰乱后一个临界点的方式,此处的分析未解决。 SR相互作用以如下方式影响电荷排序,即tcp可以位于与稳定临界点相同的密度范围内。对于强SR,tcp靠近scp,而对于弱SR,tcp靠近cp。

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