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The diffusion behavior and capacitance of tetraethylammonium/tetrafluoroborate ions in acetonitrile with different molar concentrations: a molecular dynamics study

机译:具有不同摩尔浓度的乙腈中四乙基铵/四氟硼酸盐离子的扩散行为和电容:分子动力学研究

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摘要

A molecular dynamics (MD) simulation with the optimized potentials for liquid simulations-all atom (OPLS-AA) force field was carried out to investigate the dynamic behaviors of organic electrolyte molecules between a graphite cathode and anode. This study considered the tetraethylammonium cation (NEt4+) and tetrafluoroborate anion (BF4-) in acetonitrile (ACN) solvent. The predicted NEt4-BF4 solution density at 1 M from the MD isothermal-isobaric ensemble (NPT) is about 0.861 g cm(-3), which is very close to the corresponding experimental value. This indicates that the OPLS-AA force field can accurately describe the interactions between these molecules. The detailed diffusion mechanism and the corresponding viscosity solution for different NEt4-BF4 mole fractions were explored. The charge density distribution of electrolyte molecules between the graphite cathode and anode from MD simulation was further used to obtain the potential drop by solving the Poisson equation and to obtain system capacitance. This study provides a method to determine the proper molar concentration of electrolyte NEt4-BF4 in ACN solution which can balance ionic conductivity and capacitance to enhance supercapacitor performance.
机译:进行了具有液体模拟的优化电位的分子动力学(MD)模拟 - 所有原子(OPLS-AA)力场进行,以研究石墨阴极和阳极之间有机电解质分子的动态行为。该研究认为,乙腈(ACN)溶剂中的四乙基阳离子(NET4 +)和四氟硼酸盐阴离子(BF4-)。从MD等温 - 等因素合奏(NPT)的预测Net4-BF4溶液密度为1μm为约0.861g cm(-3),其非常接近相应的实验值。这表明OPLS-AA力场可以准确地描述这些分子之间的相互作用。探讨了不同Net4-BF4摩尔级分的详细扩散机理和相应的粘度溶液。通过求解泊松方程并获得系统电容,进一步使用来自MD模拟的石墨阴极和阳极之间的电解质分子的电解密密度分布。本研究提供了一种方法来确定ACN溶液中电解质Net4-BF4的适当摩尔浓度,其可以平衡离子电导率和电容,以提高超级电容器性能。

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  • 来源
    《RSC Advances》 |2017年第87期|共7页
  • 作者单位

    Natl Sun Yat Sen Univ Dept Mech &

    Electromech Engn Kaohsiung 804 Taiwan;

    Natl Sun Yat Sen Univ Dept Mech &

    Electromech Engn Kaohsiung 804 Taiwan;

    Natl Sun Yat Sen Univ Dept Mech &

    Electromech Engn Kaohsiung 804 Taiwan;

    Natl United Univ Dept Mech Engn Miaoli 360 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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