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首页> 外文期刊>The Journal of Chemical Physics >What makes ionic fluids characteristically ionic? A corresponding-states analysis of the surface tension of an ionic model fluid with variable dispersion interactions
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What makes ionic fluids characteristically ionic? A corresponding-states analysis of the surface tension of an ionic model fluid with variable dispersion interactions

机译:是什么使离子液体具有典型的离子性?具有可变色散相互作用的离子模型流体的表面张力的相应状态分析

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Inorganic molten salts, such as NaCl, are known to show characteristically lower values of Guggenheims corresponding-states surface tension γred at a given reduced temperature T/T_c than simple or aprotic polar fluids. Recently, the corresponding values of γ_(red) for (some) room temperature ionic liquids (RTILs) were found in the same region as those for weakly polar fluids, that is, markedly above the values typical of inorganic molten salts despite the ionic character of RTILs. Here, we present the results of simulations of an ionic model fluid in which the strength of attractive dispersion interactions among the ions is varied relative to the Coulomb interactions. For weak dispersive interactions, the behavior known for real inorganic molten salts is found. If the attractive dispersion energy of two unlike ions at contact exceeds 20% of the Coulombic attraction in such an isolated ion pair, γ_(red) increases markedly and approaches the region of values for simple and polar fluids. Rough theoretical estimates of the relative strengths of dispersive and Coulombic attractions in molten inorganic salts and in RTILs support our conclusion that the dispersion interactions in RTILs are strong enough for their corresponding-states surface tension to behave regularly and, thus, to deviate from the values one would expect for strongly ionic systems.
机译:已知诸如NaCl的无机熔融盐在给定的降低的温度T / T_c下显示出比简单或非质子极性流体更低的Guggenheims对应态表面张力γred值。最近,在一些与弱极性流体相同的区域中发现了(某些)室温离子液体(RTIL)的γ_(红色)对应值,即尽管具有离子特性,但仍明显高于无机熔融盐的典型值。 RTIL。在这里,我们介绍了一种离子模型流体的仿真结果,其中离子之间有吸引力的分散相互作用的强度相对于库仑相互作用而变化。对于弱的分散相互作用,发现了真正的无机熔融盐已知的行为。如果在这种隔离的离子对中,两种不同离子在接触时的吸引分散能超过库仑吸引的20%,则γ_(red)显着增加,并接近简单流体和极性流体的值区域。对熔融无机盐和RTIL中分散和库仑吸引力的相对强度的粗略理论估计支持我们的结论,即RTIL中的分散相互作用足够强,以使其相应状态的表面张力规则地表现出来,从而偏离了这些值。人们会期望强离子系统。

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