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Gold Nanoparticles Stabilized by Acetylene-Functionalized Multidentate Thioether Ligands: Building Blocks for Nanoparticle Superstructures

机译:乙炔官能的多齿硫醚配体稳定的金纳米粒子:纳米粒子超结构的基础。

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摘要

Aiming at the formation of inorganic/organic hybrid gold nanoparticle superstructures, the design and synthesis of acetylene-monofunctionalized multidentate thioether ligands and their ability to stabilize gold nanoparticles are presented. Rather monodisperse gold particles with diameters of about 1 nm are obtained, which are coated by a small number of ligands, each comprising a silyl-protected acetylene. The acetylene is attached at the end of a rigid ethynylene-phenylene unit of variable length, leading to functionalized gold nanoparticles carrying acetylenes at different distances from the nanoparticle surface. These particles are interlinked by diacetylene formation and are investigated by transmission electron microscopy and UV/vis spectroscopy, revealing the formation of nanoparticle aggregates and small superstructures such as dimers or trimers while the nanoparticles themselves retain their integrity. The interparticle distance in small nanoparticle superstructures reflects the ethynylene-phenylene spacer length corroborating the wet chemical interlinking as the origin of these organic/ inorganic hybrid structures.
机译:针对无机/有机杂化金纳米粒子的超结构的形成,提出了乙炔单官能化多齿硫醚配体的设计与合成及其稳定金纳米粒子的能力。而是获得直径约1nm的单分散金颗粒,其被少量配体涂覆,每个配体包含甲硅烷基保护的乙炔。乙炔连接在可变长度的刚性乙炔-亚苯基单元的末端,从而导致官能化的金纳米颗粒在距纳米颗粒表面不同距离处携带乙炔。这些颗粒通过联乙炔的形成而相互连接,并通过透射电子显微镜和紫外/可见光谱进行了研究,揭示了纳米颗粒聚集体和小的超结构(如二聚体或三聚体)的形成,而纳米颗粒本身保持了完整性。小纳米颗粒超结构中的颗粒间距离反映了乙炔基-亚苯基间隔基长度,证实了湿化学相互作用是这些有机/无机杂化结构的起源。

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  • 来源
    《Advanced Functional Materials》 |2009年第21期|3497-3506|共10页
  • 作者单位

    Department of Chemistry University of Basel St. Johanns-Ring 19, 4056 Basel (Switzerland);

    C-CINA Biozentrum University of Basel Mattenstrasse 26, 4002 Basel (Switzerland);

    Department of Chemistry University of Basel St. Johanns-Ring 19, 4056 Basel (Switzerland) Institute for Nanotechnology Forschungszentrum Karlsruhe GmbH P. O. Box 3640, 76021 Karlsruhe (Germany);

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