Division of Nanobiomedicine and i-Lab, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou 215123, China.
Small. 2013 Jul 8;9(13):2308-15. doi: 10.1002/smll.201202503. Epub 2013 Feb 11.
A quantitative understanding of the localized surface plasmon resonances (LSPRs) of metallic nanostructures has received tremendous interest. However, most of the current studies are concentrated on theoretical calculation due to the difficulty in experimentally obtaining monodisperse discrete metallic nanostructures with high purity. In this work, endeavors to assemble symmetric and asymmetric gold nanoparticle (AuNP) dimer structures with exceptional purity are reported using a DNA self-assembly strategy through a one-step gel electrophoresis, which greatly facilitates the preparation process and improves the final purity. In the obtained Au nanodimers, the sizes of AuNPs (13, 20, and 40 nm) and the interparticle distances (5, 10, and 15 nm) are tunable. The size- and distance-dependent plasmon coupling of ensembles of single, isolated dimers in solution are subsequently investigated. The experimental measurements are correlated with the modeled plasmon optical properties of Au nanodimers, showing an expected resonance shift with changing particle sizes and interparticle distances. This new strategy of constructing monodisperse metallic nanodimers will be helpful for building more complicated nanostructures, and our theoretical and experimental understanding of the intrinsic dependence of plasmon property of metallic nanodimer on the sizes and interparticle distances will benefit the future investigation and exploitation of near-field plasmonic properties.
人们对金属纳米结构局域表面等离激元共振(LSPR)的定量理解产生了浓厚的兴趣。然而,由于难以实验获得具有高纯度的单分散离散金属纳米结构,目前大多数研究都集中在理论计算上。在这项工作中,通过一步凝胶电泳,利用 DNA 自组装策略报告了组装具有优异纯度的对称和不对称金纳米粒子(AuNP)二聚体结构的努力,这大大简化了制备过程并提高了最终纯度。在所获得的 Au 纳米二聚体中,可以调节 AuNP 的尺寸(13、20 和 40nm)和粒子间距离(5、10 和 15nm)。随后研究了溶液中单、孤立二聚体的局域等离激元耦合与尺寸和距离的关系。实验测量与 Au 纳米二聚体的模型等离子体光学特性相关联,显示出随粒子尺寸和粒子间距离变化的预期共振位移。这种构建单分散金属纳米二聚体的新策略将有助于构建更复杂的纳米结构,我们对金属纳米二聚体等离子体特性与尺寸和粒子间距离的固有依赖性的理论和实验理解将有助于未来对近场等离子体特性的研究和开发。