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DNA Brush-Directed Vertical Alignment of Extensive Gold Nanorod Arrays with Controlled Density

机译:具有受控密度的广泛金纳米座阵列的DNA刷垂直对准

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Control over the orientation of metal nanorods is important for both fundamental and applied research. We show that gold nanorods (GNRs) can be aligned in a single direction by adsorbing positively charged GNRs onto a double-strand DNA-grafted substrate through electrostatic interaction. The ordered structure can be optimized by controlling the density of the positive charges on the surface of the GNRs. We found, in agreement with the results of theoretical simulation, that the resultant structure exhibits plasmonic properties that are dependent on the GNR orientation relative to the direction of an oscillating electric field. Our approach provides new insights into the polymer-assisted self-assembly of rod-shaped nanoparticles utilizing electrostatic interactions.
机译:对金属纳米棒的定向对照对基础和应用的研究非常重要。我们表明,通过静电相互作用将带正电荷的GNR吸附到双链DNA接枝基板上,可以在单个方向上对准金纳米棒(GNRS)。可以通过控制GNRS表面上的正电荷的密度来优化有序结构。我们发现,与理论模拟的结果一致,所得到的结构表现出依赖于相对于振荡电场的方向的GNR取向的等离子体性能。我们的方法在利用静电相互作用的杆状纳米粒子的聚合物辅助自组装提供了新的见解。

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