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首页> 外文期刊>ACS nano >Coulomb Force Directed Single and Binary Assembly of Nanoparticles from Aqueous Dispersions by AFM Nanoxerography
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Coulomb Force Directed Single and Binary Assembly of Nanoparticles from Aqueous Dispersions by AFM Nanoxerography

机译:库仑力引导的AFM纳米静电学从水分散体的纳米粒子的单链和双链组装。

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We present a simple protocol to obtain versatile assemblies of nanoparticles from aqueous dispersions onto charge patterns written by atomic force microscopy, on a 100 nm thin film of polymethylmethacrylate spin-coated on silicon wafers. This protocol of nanoxerography uses a two-stage development involving Incubation of the desired aqueous colloidal dispersion on charge patterns and subsequent immersion in an adequate water-soluble alcohol. The whole process takes only a few minutes. Numerical simulations of the evolution of the electric field generated by charge patterns in various solvents are done to resolve the mechanism by which nanoparticle assembly occurs. The generic nature of this protocol is demonstrated by constructing various assemblies of charged organic/inorganic/metallic (latex, silica, gold) nanoparticles of different sizes (3 to 100 nm) and surface functionalities from aqueous dispersions onto charge patterns of complex geometries. We also demonstrate that it Is possible to construct a binary assembly of nanoparticles on a pattern made of positive and negative charges generated in a single charge writing step, by sequential developments in two aqueous dispersions of oppositely charged particles. This protocol literally extends the spectra of eligible colloids that can be assembled by nanoxerography and paves the way for building complex assemblies of nanoparticles on predefined areas of surfaces, which could be useful for the elaboration of nanoparticle-based functional devices.
机译:我们提出了一个简单的协议,可以将水分散体上的纳米粒子多功能组装到原子力显微镜写的电荷图案上,该薄膜在旋涂在硅片上的100纳米聚甲基丙烯酸甲酯薄膜上。纳米静电印刷术的方案使用了两个阶段的开发,其中包括在电荷图形上孵育所需的胶体水分散体,然后浸入适当的水溶性醇中。整个过程仅需几分钟。进行了由各种溶剂中的电荷模式产生的电场演化的数值模拟,以解决纳米粒子组装发生的机理。通过构造不同大小(3至100 nm)的带电有机/无机/金属(胶乳,二氧化硅,金)纳米粒子的各种组件以及从水分散体到复杂几何形状的电荷图案的表面功能,可以证明该协议的一般性质。我们还证明,通过在两个带相反电荷的粒子的水分散体中依次显影,可以在由单个电荷写入步骤中产生的正电荷和负电荷组成的图案上构建纳米颗粒的二元组装体。该协议从字面上扩展了可以通过纳米静电复印技术组装的合格胶体的光谱,并为在预定的表面区域上构建纳米粒子的复杂组件铺平了道路,这可能对基于纳米粒子的功能设备的制造很有用。

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