首页> 外文期刊>The Journal of Chemical Physics >Computer simulation study of the phase behavior and structural relaxation in a gel-former modeled by three-body interactions
【24h】

Computer simulation study of the phase behavior and structural relaxation in a gel-former modeled by three-body interactions

机译:通过三体相互作用建模的凝胶形成剂中相行为和结构弛豫的计算机模拟研究

获取原文
获取原文并翻译 | 示例
           

摘要

We report a computer simulation study of a model gel-former obtained by modifying the three-body interactions of the Stillinger-Weber potential for silicon. This modification reduces the average coordination number and consequently shifts the liquid-gas phase coexistence curve to low densities, thus facilitating the formation of gels without phase separation. At low temperatures and densities, the structure of the system is characterized by the presence of long linear chains interconnected by a small number of three coordinated junctions at random locations. At small wave vectors the static structure factor shows a nonmonotonic dependence on temperature, a behavior which is due to the competition between the percolation transition of the particles and the stiffening of the formed chains. We compare in detail the relaxation dynamics of the system as obtained from molecular dynamics with the one obtained from Monte Carlo dynamics. We find that the bond correlation function displays stretched exponential behavior at moderately low temperatures and densities, but exponential relaxation at low temperatures. The bond lifetime shows an Arrhenius behavior, independent of the microscopic dynamics. For the molecular dynamics at low temperatures, the mean squared displacement and the (coherent and incoherent) intermediate scattering function display at intermediate times a dynamics with ballistic character and we show that this leads to compressed exponential relaxation. For the Monte Carlo dynamics we always find an exponential or stretched exponential relaxation. Thus we conclude that the compressed exponential relaxation observed in experiments is due to the out-of-equilibrium dynamics.
机译:我们报告了通过修改硅的斯蒂林格-韦伯势能的三体相互作用获得的模型凝胶形成剂的计算机模拟研究。该修饰降低了平均配位数,因此将液相-气相共存曲线移至低密度,从而促进了凝胶的形成而没有相分离。在低温和低密度的情况下,系统的结构特征是存在长的线性链,该线性链由少量的三个在随机位置上的协调连接点相互连接。在小波矢处,静态结构因子显示出对温度的非单调依赖性,这是由于颗粒的渗透转变与所形成链的硬化之间的竞争所致。我们详细比较了从分子动力学获得的系统弛豫动力学与从蒙特卡洛动力学获得的弛豫动力学。我们发现,键相关函数在适度的低温和密度下显示出拉伸的指数行为,但在低温下却显示出指数松弛。结合寿命显示出Arrhenius行为,与微观动力学无关。对于低温下的分子动力学,均方位移和(相干和不相干)中间散射函数在中间时间显示具有弹道特性的动力学,我们表明这导致压缩的指数弛豫。对于蒙特卡洛动力学,我们总是会发现指数或拉伸指数松弛。因此,我们得出的结论是,在实验中观察到的压缩指数松弛是由于不平衡动力学引起的。

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