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Scanning tunneling microscopy and small angle neutron scattering study of mixed monolayer protected gold nanoparticles in organic solvents

机译:混合有机单层保护金纳米粒子在有机溶剂中的扫描隧道显微镜和小角中子散射研究

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摘要

When a binary mixture of ligand molecules is used to coat gold nanoparticles, stripe-like domains can occur. These nanodomains confer nanoparticles unique structure-dependent properties. The domain structure has been characterized primarily using scanning tunneling microscopy (STM) in air and in vacuum. Here we show the first STM images of striped nanoparticles in a solvent, 1-phenyloctane. We achieve stable imaging conditions on dodecanethiol-hexanethiol (C12 : C6) 2 :1 protected gold nanoparticles. These features are persistent across many images and retain their direction and overall morphology when recorded at different scan angles. We also perform small angle neutron scattering (SANS) on two hybrid C6 : C12 nanoparticle samples dissolved in chloroform. The hybrid nanoparticles have the same composition and size distribution as samples imaged with STM, but one of the two ligands (either C6 or C12) is deuterated. Low resolution models reconstructed ab initio by simultaneous fitting of the SANS data reveal striped patterns of C6 and C12 on the gold surface. We use image analysis to quantitatively compare STM and SANS data, achieving remarkable agreement. This is the first paper to compare evidence of the existence of stripe-like domains for particles in solution using two independent techniques, and we believe that a combination of STM and SANS could become a major approach to characterize mixed ligand nanomaterials in solution.
机译:当使用配体分子的二元混合物涂覆金纳米颗粒时,会出现条纹状结构域。这些纳米域赋予纳米颗粒独特的结构依赖性。主要通过在空气和真空中使用扫描隧道显微镜(STM)来表征畴结构。在这里,我们显示了在溶剂1-苯基辛烷中的条状纳米颗粒的第一张STM图像。我们在十二烷硫醇-己硫醇(C12:C6)2:1保护的金纳米颗粒上实现了稳定的成像条件。这些特征在许多图像上都是持久的,并且当以不同的扫描角度记录时,仍保留其方向和整体形态。我们还对溶解在氯仿中的两个杂化C6:C12纳米颗粒样品进行小角中子散射(SANS)。杂化纳米颗粒具有与STM成像的样品相同的组成和尺寸分布,但两个配体之一(C6或C12)是氘代的。通过同时拟合SANS数据从头构建的低分辨率模型揭示了金表面上C6和C12的条纹图案。我们使用图像分析对STM和SANS数据进行定量比较,取得了显着的一致性。这是第一篇使用两种独立技术比较溶液中颗粒存在条纹状结构域证据的论文,我们相信STM和SANS的组合可能成为表征溶液中混合配体纳米材料的主要方法。

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