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Toward dynamic control over TiO _2 nanocrystal monolayer-by-monolayer film formation by electrophoretic deposition in nonpolar solvents

机译:在非极性溶剂中通过电泳沉积动态控制TiO _2纳米晶单层成膜的动态控制

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摘要

The controlled electrophoretic deposition of monolayers and ultrathin films of 4.0 nm TiO _2 nanocrystals from stable, nonpolar solvent-based suspensions is reported. Stable suspensions were prepared in hexane, and the electrophoretic mobility of the nanocrystals was enhanced by a combination of a liquid-liquid extraction followed by mechanical surfactant removal by high-speed centrifugation. The controlled evolution of the density of TiO -2 nanocrystal monolayers was studied by transmission electron microscopy and optical transmittance spectroscopy. Ultrathin films were assembled while maintaining monolayer-by-monolayer growth and uniform density of the film. A time-dependent, equivalent circuit model has been proposed to characterize the electrophoretic current that was recorded during our experiments. Further, we demonstrate that the proposed model, coupled with the mobility, provides a means to estimate the deposition rate and, hence, the time necessary to fabricate a submonolayer, a monolayer, and multilayers of nanocrystals.
机译:报道了稳定的,非极性溶剂基悬浮液对4.0 nm TiO _2纳米晶体的单层和超薄膜的受控电泳沉积。在己烷中制备了稳定的悬浮液,并且通过液-液萃取,然后通过高速离心去除机械表面活性剂的组合提高了纳米晶体的电泳迁移率。通过透射电子显微镜和光学透射光谱研究了TiO -2纳米晶体单层密度的受控演化。组装超薄薄膜,同时保持单层逐层生长和均匀的薄膜密度。已经提出了一种随时间变化的等效电路模型来表征在我们的实验过程中记录的电泳电流。此外,我们证明了所提出的模型与迁移率相结合,提供了一种方法来估算沉积速率,从而估算了制造亚单层,单层和纳米晶体多层所需的时间。

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