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One-dimensional self-assembly of gold nanoparticles for tunable surface plasmon resonance properties

机译:金纳米粒子的一维自组装可调节表面等离子体共振特性

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The localized surface plasmon resonance (LSPR) is a collective oscillation of the nanoparticle conduction electrons. LSPR excitation in silver and gold nanoparticles produces strong extinction and scattering spectra that in recent years have been used for important sensing and spectroscopy applications. Tuning the optoelectronic properties by controlling coupled SP modes in metals is one of the major challenges in the area of metal nanomaterials. Here we develop a simple method to fabricate linear-chainlike aggregates of gold nanoparticles (so-called nanochains), tuning the linear optical properties in a wide wavelength range from visible to the near infrared. The aggregation behaviour and linear self-assembly mechanism of citrate-stabilized gold colloids as provoked by the addition of cetyltrimethylammonium bromide (CTAB) are also analysed. The CTAB with appropriate concentration serves as the 'glue' that can link the {100} facets of two neighbour Au NPs, which leads to an anisotropic distribution of the residual surface charge, and this extrinsic electric dipole formation is responsible for the linear organization of the gold NPs into short chains.
机译:局部表面等离子体激元共振(LSPR)是纳米粒子传导电子的集体振荡。银和金纳米粒子中的LSPR激发产生强烈的消光和散射光谱,近年来已用于重要的传感和光谱学应用。通过控制金属中的耦合SP模式来调节光电性能是金属纳米材料领域的主要挑战之一。在这里,我们开发了一种简单的方法来制造金纳米颗粒的线性链状聚集体(所谓的纳米链),从而在从可见光到近红外的宽波长范围内调整线性光学特性。还分析了添加十六烷基三甲基溴化铵(CTAB)引起的柠檬酸盐稳定的金胶体的聚集行为和线性自组装机理。具有适当浓度的CTAB可以作为“胶水”,可以连接两个相邻Au NPs的{100}面,从而导致剩余表面电荷的各向异性分布,并且这种外在电偶极子的形成导致了线性结构的形成。黄金NP变成短链。

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