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ION-ION CORRELATIONS IN QUENCHED DISORDERED MEDIA

机译:静置无序介质中的离子相关性

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Monte Carlo simulation based on Widom's test particle method is used to study the behavior of dilute ionic solutes in a quenched disordered medium with ionized obstacles. The structure of the medium is assumed to correspond to that of an ionic fluid equilibrated at certain prequenching temperature T-q and permittivity epsilon(q) different from the corresponding values at the conditions of observation. The correlations among solute ions display qualitative differences from those observed in annealed systems. The ions of equal sign are attracted to domains of the disordered material characterized by charge opposite to that of the ions. The attraction of ions of the same sign to the same domains results in an apparent attractive contribution to the disorder-averaged interionic potential. At distances sufficiently exceeding the screening length pertaining to the ionized obstacles at the prequenching conditions, the disorder-induced term prevails over the direct Coulombic repulsion and a net attraction is observed. A similar mechanism leads to a long-ranged repulsion between oppositely charged ions. These findings are in agreement with earlier calculations of the disorder-averaged ion-ion potentials based on the asymptotic Debye-Huckel description of the disordered medium. The simulations are also used to estimate the effects of the medium on thermodynamic properties of the embedded ionic solute. The energies and activity coefficients are found to decrease with the product of the prequenching temperature and permittivity, a phenomenon explained in terms of the increase of the potential fluctuations in the disordered medium with growing epsilon(q)T(q) In spite of its global electroneutrality, the quenched medium displays a strong selectivity with respect to the valency of the solute, the tendency towards absorption increasing with the charge of the ions. The selectivity rapidly increases with increasing value of the characteristic product of the prequenching temperature and the permittivity epsilon(q)T(q). (C) 1996 American Institute of Physics. [References: 58]
机译:基于Widom的测试粒子方法的蒙特卡洛模拟用于研究在带电离障碍的淬火无序介质中稀离子溶质的行为。假设介质的结构对应于在某些预淬火温度T-q和介电常数ε(q)平衡的离子流体的结构,该离子流体与观察条件下的相应值不同。溶质离子之间的相关性显示出与退火系统中观察到的定性差异。等号离子被吸引到无序材料的区域,该区域的特征是与离子相反的电荷。具有相同符号的离子对相同结构域的吸引导致对平均无序离子势的明显吸引作用。在预淬火条件下,在足够超过与电离障碍物有关的屏蔽长度的距离上,无序诱发的项胜过直接的库仑排斥,并观察到净吸引。类似的机制会导致带相反电荷的离子之间发生长距离排斥。这些发现与基于无序介质的渐近Debye-Huckel描述的无序平均离子电势的早期计算是一致的。该模拟还用于估计介质对嵌入的离子溶质的热力学性质的影响。发现能量和活度系数随预淬火温度和介电常数的乘积而降低,这种现象可以用随着ε(q)T(q)增长而增长的无序介质中潜在波动的增加来解释。电子中性,淬灭的介质对溶质的价态显示出很强的选择性,吸收的趋势随离子的电荷而增加。选择性随着预淬火温度和介电常数ε(q)T(q)的特征积的值的增加而迅速增加。 (C)1996年美国物理研究所。 [参考:58]

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