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Tuning of plasmon resonance of gold nanorods by controlled etching

机译:通过控制刻蚀调谐金纳米棒的等离子体共振

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Production of gold nanorods with preset geometric characteristics is of fundamental importance for many fields of application, because even slight variations in their absolute sizes or axial ratio may noticeably change the positions and intensities of the maxima in the resonance absorption and scattering of light. In this work, a method has been proposed for tuning the plasmon resonance of gold nanorods in a wide wavelength range via their controlled etching along the major axis with a complex of Au3+ ions and cetyltrimethylammonium bromide. The synthesized gold nanorods possess longitudinal plasmon resonance at a wavelength of 920 nm, an average thickness of 16 nm, and an axial ratio of about 5. A chloroauric acid solution added to a colloid of the nanorods etches their ends and decreases the axial ratio thereof, while their thickness remains unchanged, thereby shifting the longitudinal plasmon resonance toward shorter wavelengths. The axial ratio of resulting nanoparticles and the position of plasmon resonance are entirely determined by the ratio between gold atoms in the initial nanorods and gold ions in the solution. This makes it possible to vary the axial ratio from 5 to 1 and finely tune plasmon resonance in a wavelength range from 920 to 520 nm. It has also been shown that the proposed method can be used for controlled etching of gold nanospheres.
机译:具有预设几何特性的金纳米棒的生产对于许多应用领域至关重要,因为即使其绝对尺寸或轴向比发生微小变化,也可能会显着改变共振吸收和散射光最大值的位置和强度。在这项工作中,已经提出了一种通过在金纳米棒上沿Au3 +离子与十六烷基三甲基溴化铵的配合物沿着主轴进行受控蚀刻来在宽波长范围内调节等离子体共振的方法。合成的金纳米棒在920nm的波长处具有纵向等离子体共振,平均厚度为16nm,并且轴向比约为5。添加到纳米棒的胶体中的氯金酸溶液腐蚀其末端并降低其轴向比。 ,虽然它们的厚度保持不变,从而使纵向等离振子共振向较短的波长移动。所得纳米粒子的轴向比率和等离振子共振的位置完全由初始纳米棒中的金原子与溶液中的金离子之间的比率决定。这使得可以将轴向比从5更改为1,并在920至520 nm的波长范围内微调等离子体共振。还已经表明,所提出的方法可以用于金纳米球的受控蚀刻。

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