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Autori principali: Li, Xin, Li, Changhao, Chen, Xiangui, Wang, Zaixin, Min, Sun, Huang, Decai
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2410.22608
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author Li, Xin
Li, Changhao
Chen, Xiangui
Wang, Zaixin
Min, Sun
Huang, Decai
author_facet Li, Xin
Li, Changhao
Chen, Xiangui
Wang, Zaixin
Min, Sun
Huang, Decai
contents A multiple-image method is developed to accurately calculate the electrostatic interaction between neutral dielectric particles and a uniformly charged dielectric substrate. The difference in dielectric constants between the particle and the solvent medium leads to a reversal of positive and negative polarizations in the particle. The variance in dielectric constants between the solvent medium and the substrate causes a transition from attractive to repulsive forces between the particle and the substrate. A nonuniform electrostatic field is generated by the polarized charges on the substrate due to mutual induction. These characteristics of electrostatic manipulation determine whether particles are adsorbed onto the substrate or pushed away from it. The self-assembled particles tend to aggregate in a stable hexagonal structure on the substrate. These findings provide new insights into self-assembly processes involving neutral particles on a dielectric substrate.
format Preprint
id arxiv_https___arxiv_org_abs_2410_22608
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Electrostatic self-assembly of neutral particles on a dielectric substrate: A theoretical study via a multiple-image method and an effective-dipole approach
Li, Xin
Li, Changhao
Chen, Xiangui
Wang, Zaixin
Min, Sun
Huang, Decai
Soft Condensed Matter
Chemical Physics
A multiple-image method is developed to accurately calculate the electrostatic interaction between neutral dielectric particles and a uniformly charged dielectric substrate. The difference in dielectric constants between the particle and the solvent medium leads to a reversal of positive and negative polarizations in the particle. The variance in dielectric constants between the solvent medium and the substrate causes a transition from attractive to repulsive forces between the particle and the substrate. A nonuniform electrostatic field is generated by the polarized charges on the substrate due to mutual induction. These characteristics of electrostatic manipulation determine whether particles are adsorbed onto the substrate or pushed away from it. The self-assembled particles tend to aggregate in a stable hexagonal structure on the substrate. These findings provide new insights into self-assembly processes involving neutral particles on a dielectric substrate.
title Electrostatic self-assembly of neutral particles on a dielectric substrate: A theoretical study via a multiple-image method and an effective-dipole approach
topic Soft Condensed Matter
Chemical Physics
url https://arxiv.org/abs/2410.22608