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AEROSOL SELF-ASSEMBLY OF NANOPARTICLE FILMS: GROWTH DYNAMICS AND RESULTING 3D STRUCTURE

机译:纳米粒子膜的气溶胶自组装:生长动力学和由此产生的3D结构

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In this study, aerosol deposition of nanoparticles on flat surfaces has been investigated by Langevin dynamics (LD) accounting for Brownian's diffusion and a fix translational velocity. The particles are assumed to drop one at a time and had a monodisperse size distribution. The detailed morphology of the nanoparticle films was investigated as a function of Pe number, the ratio between Brownian and translational displacement for different structural constrains. The porosity was reduced with increasing Pe number from the diffusion to ballistic deposition limit. It was found that the simulation constrains have a substantial impact on the resulting film structural properties. This was attributed to the multi-scale porosity of these aerosol-deposited films.
机译:在这项研究中,通过Langevin Dynamics(LD)占布朗扩散和固定平移速度的纳米粒子在平坦表面上的气溶胶沉积。假设颗粒一次滴一次并具有单分散尺寸分布。研究了纳米粒子膜的详细形态作为PE数的函数,褐色和平移位移的比例不同的结构约束。随着来自扩散到弹道沉积极限的PE数量增加,孔隙率降低。发现模拟约束对所得薄膜结构性质具有显着影响。这归因于这些气溶胶沉积的薄膜的多尺度孔隙率。

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