首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Layer-by-layer assembly of polyelectrolyte chains and nanoparticles on nanoporous substrates: Molecular dynamics simulations
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Layer-by-layer assembly of polyelectrolyte chains and nanoparticles on nanoporous substrates: Molecular dynamics simulations

机译:纳米孔基质上的聚电解质链和纳米颗粒的逐层组装:分子动力学模拟

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摘要

We performed molecular dynamics simulations of a multilayered assembly of oppositely charged polyelectrolyte chains and nanoparticles on porous substrates with cylindrical pores. The film was constructed by the sequential adsorption of oppositely charged species in a layer-by-layer fashion from dilute solutions. The multilayer assembly proceeds through surface overcharging after the completion of each deposition step. The substrate overcharging fraction fluctuates around 0.5 for nanoparticle-polyelectrolyte systems and around 0.4 for polyelectrolyte-polyelectrolyte systems. The surface coverage increases linearly with the number of deposition steps. The rate of surface coverage increases as a function of the number of deposition step changes when the pore is blocked. The closing of the pore occurs from the pore entrance for nanoparticle-polyelectrolyte systems. In the case of polyelectrolyte- polyelectrolyte systems, the pore plug is formed inside the pore and then spreads toward the pore ends.
机译:我们对带有圆柱形孔的多孔基质上带相反电荷的聚电解质链和纳米颗粒的多层组装进行了分子动力学模拟。该膜是通过从稀溶液中逐层依次吸附带相反电荷的物质而构建的。在完成每个沉积步骤后,多层组件将进行表面过充电。对于纳米粒子-聚电解质系统,基材的过充电率波动约0.5,而对于聚电解质-聚电解质系统,基片的过充电率波动约0.4。表面覆盖率随沉积步骤的数量线性增加。当堵塞孔时,表面覆盖率随沉积步骤数的变化而增加。对于纳米颗粒-聚电解质系统,孔的封闭从孔入口发生。在聚电解质-聚电解质体系的情况下,孔塞形成在孔内部,然后向孔端扩散。

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