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纳米颗粒浓度对二元悬浮液对流沉积的影响。

Effect of nanoparticle concentration on the convective deposition of binary suspensions.

作者信息

Kumnorkaew Pisist, Gilchrist James F

机构信息

Center for Advanced Materials and Nanotechnology, Department of Chemical Engineering, Lehigh University, Bethlehem, Pennsylvania 18015, USA.

出版信息

Langmuir. 2009 Jun 2;25(11):6070-5. doi: 10.1021/la804209m.

Abstract

We investigate the coupling between the suspension properties and the deposition process during convective deposition of aqueous binary suspensions of 1 microm silica microspheres and 100 nm polystyrene (PS) nanoparticles. The structures formed from this rapid and scalable process have use in a variety of optical, chemical, and biochemical sensing applications. At conditions that produce a well-ordered microsphere monolayer at a silica volume fraction of 20% in the absence of nanoparticles, we examine the effect of varying the concentration of nanoparticles from 0% to 16% on the quality of the microsphere deposition and the exposure of the microspheres within the PS layer. At low concentrations of nanoparticles, the deposition results in an instability that forms stripes parallel to the receding contact line. Optimum deposition occurs between 6% and 8% PS and forms a monolayer having the same high degree of uniformity as the monodisperse suspension is fabricated. For higher concentrations, the deposition is increasingly less uniform as a result of nanoparticle depletion destabilizing the microspheres. The degree to which each microsphere is buried by the nanoparticles in the deposited thin film increases with nanoparticle concentration. This variation in coverage also suggests interplay between deposition and nanoparticle engineered properties of the suspension that influence the deposited morphology.

摘要

我们研究了在对流沉积过程中,1微米二氧化硅微球和100纳米聚苯乙烯(PS)纳米颗粒的二元水悬浮液的悬浮特性与沉积过程之间的耦合。这种快速且可扩展的过程所形成的结构可用于各种光学、化学和生化传感应用。在不存在纳米颗粒的情况下,当二氧化硅体积分数为20%时可产生有序微球单层的条件下,我们研究了将纳米颗粒浓度从0%变化到16%对微球沉积质量以及微球在PS层内暴露情况的影响。在低纳米颗粒浓度下,沉积会导致一种不稳定性,形成与后退接触线平行的条纹。在PS浓度为6%至8%之间会出现最佳沉积,形成的单层具有与单分散悬浮液制备时相同的高度均匀性。对于更高的浓度,由于纳米颗粒耗尽使微球不稳定,沉积越来越不均匀。在沉积薄膜中,每个微球被纳米颗粒掩埋的程度随纳米颗粒浓度增加。这种覆盖度的变化还表明了沉积与悬浮液的纳米颗粒工程性质之间的相互作用,而这种相互作用会影响沉积形态。

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