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Liquid-air interface self-assembly: A facile method to fabricate long-range nanoparticle monolayers

机译:液-气界面自组装:一种制造长距离纳米粒子单层的简便方法

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A liquid-air interfacial assembly approach is a technique to fabricate long-range well-ordered nanostructures in either two or three dimensions. In this work, magnetic nanoparticles were synthesized by co-reduction of iron acetylacetonate (Fe(acac)_3) and platinum acetylacetonate (Pt(acac)_2) in benzyl ether. A few drops of the as-made nanoparticle suspension with varying concentrations were spread on the surface of diethylene glycol, ethylene glycol, and deionized water. After solvent evaporation, a substrate was placed under the liquid surface and then gently lifted up to collect nanoparticle layers. Although the nanopartides are irregular in shape, they could well self-assemble on the diethylene glycol surface, forming an extended monolayer with small defects. By contrast, multilayer domains were frequently obtained when deionized water and ethylene glycol were used as the liquid subphases. An appropriate nanoparticle concentration was also a crucial factor in this approach. The lower concentration could not form an extended monolayer while the higher concentration led to multilayer assemblies. The order of the nanoparticle layers also strongly depended on the uniformity of the nanopartides.
机译:液-气界面组装方法是一种制造二维或三维的长程有序纳米结构的技术。在这项工作中,通过在苄基醚中共还原乙酰丙酮铁(Fe(acac)_3)和乙酰丙酮铂(Pt(acac)_2)来合成磁性纳米粒子。将几滴不同浓度的制成纳米颗粒悬浮液分散在二甘醇,乙二醇和去离子水的表面上。溶剂蒸发后,将基材放在液体表面下,然后轻轻提起以收集纳米颗粒层。尽管纳米粒子的形状是不规则的,但它们可以在二甘醇表面上很好地自组装,从而形成具有较小缺陷的延伸单层。相比之下,当使用去离子水和乙二醇作为液体亚相时,经常会获得多层畴。合适的纳米颗粒浓度也是该方法的关键因素。较低的浓度不能形成延伸的单层,而较高的浓度则导致多层组件。纳米粒子层的顺序也强烈取决于纳米粒子的均匀性。

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