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Electrostatic field and charge distribution in small charged dielectric droplets

机译:小带电介质液滴中的静电场和电荷分布

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摘要

The charge distribution in small dielectric droplets is calculated on the basis of continuum medium approximation. There are considered charged liquid spherical droplets of methanol in the range of nanometer sizes. The problem is solved by the following way. We find the free energy of some ion in dielectric droplet, which is a function of distribution of other ions in the droplet. The probability of location of the ion in some element of volume in the droplet is a function of its free energy in this element of volume. The same approach can be applied to other ions in the droplet. The obtained charge distribution differs considerably from the surface distribution. The curve of the charge distribution in the droplet as a function of radius has maximum near the surface. Relative concentration of charges in the vicinity of the center of the droplet does not equal to zero, and it is the higher, the less is the total charge of the droplet. According to the estimates the model is applicable if the droplet radius is larger than 10 nm.
机译:小介质滴中的电荷分布是基于连续介质近似值计算的。认为带电的球形甲醇球形液滴在纳米尺寸范围内。该问题通过以下方式解决。我们发现介电液滴中某些离子的自由能,这是液滴中其他离子分布的函数。离子在液滴中某些体积元素中的位置概率是其在该体积元素中的自由能的函数。可以将相同的方法应用于液滴中的其他离子。所获得的电荷分布与表面分布明显不同。液滴中电荷分布的曲线作为半径的函数在表面附近最大。液滴中心附近的电荷的相对浓度不为零,该浓度越高,液滴的总电荷越少。根据估计,如果液滴半径大于10 nm,则该模型适用。

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