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硝酸钾电解质溶液的结构和热力学性质的计算机分子模拟
引用本文:徐春华,李英峰,胡松青.硝酸钾电解质溶液的结构和热力学性质的计算机分子模拟[J].中国石油大学学报(自然科学版),2006,30(2):101-105,132.
作者姓名:徐春华  李英峰  胡松青
作者单位:1. 中国石油大学,机电工程学院,山东,东营,257061
2. 中国石油大学,物理科学与技术学院,山东,东营,257061
基金项目:中国石油天然气股份有限公司资助项目
摘    要:对硝酸钾电解质溶液进行了分子动力学计算机模拟研究。水分子采用简单点电荷(SPC)三节点模型,钾离子被看作带电硬球,硝酸根离子采用刚性四节点模型,同时考虑节点间的库仑长程作用和L-J相互作用,对库仑长程作用采用EWALD求和方法进行计算。研究结果表明,随着溶液浓度的增加,水-水相互作用的总势能绝对值升高;高浓度溶液中水水作用能的升高与水分子排列有序化程度的提高有关,即在浓溶液中水分子的偶极取向更加有序化,说明有更多的水分子参与水化。

关 键 词:硝酸钾  电解质溶液  结构  热力学性质  分子动力学  计算机模拟
文章编号:1673-5005(2006)02-0101-05
收稿时间:2005-08-20
修稿时间:2005-08-20

A computer simulation study on structure and thermodynamic property of KNO3 electrolyte solution
XU Chun-hua,LI Ying-feng,HU Song-qing.A computer simulation study on structure and thermodynamic property of KNO3 electrolyte solution[J].Journal of China University of Petroleum,2006,30(2):101-105,132.
Authors:XU Chun-hua  LI Ying-feng  HU Song-qing
Institution:1.College of Mechanical and Electronic Engineering in China University of Petroleum, Dongying 257061, Shandong Province, China ; 2. College of Physics Science and Technology in China University of Petroleum, Dongying 257061, Shandong Province, China
Abstract:The computer simulation was performed in the potassium nitrate electrolyte solution using molecular dynamics method.The simple points charged(SPC) three-site model was adopted for H_2O molecule,the potassium ion was treated as hard sphere,and a rigid four-site model was adopted for the nitrate ion.During the simulation,both coulomb long-range interactions and L-J interactions were considered,and the coulomb long-range interaction was calculated using the EWALD summethod.The results show that the absolute value of water-water interaction energy increases with the increase of ionic concentration,which relates to the increase of the order degree.The higher concentration of the solution is,the higher order degree of dipole tropism is,and much more water molecules are attached to ions.
Keywords:potassium nitrate  electrolyte solution  structure  thermodynamic property  molecular dynamics  computer simulation
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