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Self-assembly of spherical and rod-shaped nanoparticles with full positional control

机译:自组装的球形和杆状纳米粒子与完整的位置控制

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The controlled positioning of spherical gold nanoparticles and gold nanorods upon self-assembly on a substrate is of great interest for the fabrication of tailored plasmonic devices. Here, an electrostatic approach with a sequential two-step assembly protocol is presented as a cost-effective and high-yield alternative to previously presented, more complex proof of concepts. Three different geometries can be separately produced in large quantities relying on electrostatic attraction and repulsion of the charge-carrying building blocks: a single gold nanoparticle at the tip, the side or on top of a gold nanorod. DLVO theory is used to explain the electrostatic assembly strategy. The process is highly efficient and assembly yields between 79% (at the tip) and 94% (for the nanoparticle at the long side of the nanorod) are achieved.
机译:球形金的定位控制纳米颗粒和金纳米棒自组装在衬底的极大兴趣为制造定制的电浆设备。连续两步组装协议低成本和高收益选择之前,更加复杂概念的证据。分别在大量生产依靠静电吸引和排斥带电的构建块:一个金纳米颗粒在顶端,侧面或顶部金奈米棒。静电组装策略。是高效和组装之间的收益率(顶端)和94%(79%的纳米颗粒奈米棒的长边)。

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