Greybush Nicholas J, Pacheco-Peña Victor, Engheta Nader, Murray Christopher B, Kagan Cherie R
ACS Nano. 2019 Feb 26;13(2):1617-1624. doi: 10.1021/acsnano.8b07619. Epub 2019 Jan 17.
Assembling metamolecules from anisotropic, shape-engineered nanocrystals provides the opportunity to orchestrate distinct optical responses one nanocrystal at a time. The Au nanorod has long been a structural archetype in plasmonics, but nanorod assemblies have largely been limited to end-to-end or side-to-side arrangements, accessing only a subset of potential metamolecule structures. Here, we employ triangular templates to direct the assembly of Au nanorods along the edges of an equilateral triangle. Using spatially resolved, dark-field scattering spectroscopy in concert with numerical simulation of individual metamolecules, we map the evolution in surface plasmon resonances as we add one, two, and three nanorods to construct triangular nanorod assemblies. The assemblies exhibit rotation- and polarization-dependent hybridized plasmon modes, which are sensitive to variations in nanorod size, position, and orientation that lead to geometrical symmetry breaking. The triangular arrangement of nanorods supports magnetic plasmon modes where electric fields are directed along the perimeter of the triangle, and the magnetic field intensity within the triangle's open interior is enhanced. Circumferential displacements of the nanorods within the templates impart either a left- or right-handed sense of rotation to the structure, which generates a chiroptical response under unidirectional oblique illumination. Our results represent an important step in realizing and characterizing metamaterial assemblies with "open" structures utilizing anisotropic plasmonic building blocks, with implications for optical magnetic field enhancement and chiral plasmonics.
从各向异性、形状工程化的纳米晶体组装超分子,为一次编排一个纳米晶体的独特光学响应提供了机会。金纳米棒长期以来一直是等离子体激元学中的结构原型,但纳米棒组件在很大程度上限于端对端或并排排列,只能获得潜在超分子结构的一个子集。在这里,我们使用三角形模板来引导金纳米棒沿着等边三角形的边缘进行组装。结合单个超分子的数值模拟,使用空间分辨暗场散射光谱,我们绘制了在添加一个、两个和三个纳米棒以构建三角形纳米棒组件时表面等离子体共振的演变情况。这些组件表现出与旋转和偏振相关的杂化等离子体模式,这些模式对纳米棒尺寸、位置和取向的变化敏感,这些变化会导致几何对称性破坏。纳米棒按三角形排列支持磁等离子体模式,其中电场沿三角形周长方向,三角形开放内部的磁场强度增强。模板内纳米棒的圆周位移赋予结构左旋或右旋旋转感,在单向斜照下产生手性光学响应。我们的结果代表了利用各向异性等离子体构建块实现和表征具有“开放”结构的超材料组件的重要一步,对光磁场增强和手性等离子体激元学具有重要意义。