反离子
化学
离子
电导率
化学物理
离子电导率
离子键合
热扩散率
扩散
离子液体
热力学
物理化学
有机化学
物理
电解质
催化作用
电极
作者
Zidan Zhang,Ram Krishna,Everett S. Zofchak,Nico Marioni,Harnoor Singh Sachar,Venkat Ganesan
摘要
We used equilibrium and non-equilibrium atomistic simulations to probe the influence of anion chemistry on the true conductivity, dynamical correlations, and ion transport mechanisms in polymeric ionic liquids. An inverse correlation was found between anion self-diffusivities, ionic mobilities, and the anion size for spherical anions. While some larger asymmetric anions had higher diffusivities than smaller spherical anions, their diffusivities and mobilities did not exhibit a direct correlation to the anion volumes. The conductivity and anion dynamical correlations also followed the same trends as displayed by the diffusivity and mobility of anions. All the systems we examined displayed positively correlated motion among anions, suggesting a contribution that enhances the conductivity beyond the ideal Nernst-Einstein value. Analysis of ion transport mechanisms demonstrated very similar hopping characteristics among the spherical anions despite differences in their sizes.
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