Institute of Nanoengineering and Microsystems, National Tsing-Hua University, Hsinchu 30013, Taiwan.
J Am Chem Soc. 2010 Aug 18;132(32):11259-63. doi: 10.1021/ja103722p.
We present a simple and efficient method for synthesizing large-area (>1 cm(2)), three-dimensional (3D) gold and silver nanoparticle supercrystal films. In this approach, Janus nanoparticle (top face solvent-phobic and bottom face solvent-philic) films with an arbitrary number of close-packed nanoparticle monolayers can be formed using layer-by-layer (LbL) assembly from suspensions of thiolate-passivated gold or silver colloids. Furthermore, we demonstrate that these films can act as true 3D plasmonic crystals with strong transverse (intralayer) and longitudinal (interlayer) near-field coupling. In contrast to conventional polyelectrolyte-mediated LbL assembly processes, this approach allows multiple longitudinal coupling modes with a conspicuous spectral dependence on the layer number. We have found a universal scaling relation between the spectral position of the reflectance dips related to the longitudinal modes and the layer number. This relation can be understood in terms of the presence of a plasmonic Fabry-Perot nanocavity along the longitudinal direction that allows the formation of standing plasmon waves under plasmon resonance conditions. The realization of 3D plasmonic coupling enables broadband tuning of the collective plasmon response over a wide spectral range (visible and near-IR) and provides a pathway to designer plasmonic metamaterials.
我们提出了一种简单而高效的方法来合成大面积(>1cm(2))、三维(3D)金和银纳米粒子超晶体薄膜。在这种方法中,通过从巯基封端的金或银胶体悬浮液中逐层(LbL)组装,可以形成具有任意数量紧密堆积的纳米粒子单层的各向同性纳米粒子(顶面疏溶剂性和底面亲溶剂性)薄膜。此外,我们证明这些薄膜可以作为真正的 3D 等离子体晶体,具有强烈的横向(层内)和纵向(层间)近场耦合。与传统的聚电解质介导的 LbL 组装过程相比,这种方法允许具有明显的层数依赖性的多个纵向耦合模式。我们发现了与纵向模式相关的反射峰的光谱位置与层数之间的普遍标度关系。根据存在沿纵向的等离子体 Fabry-Perot 纳米腔,可以理解这种关系,该纳米腔允许在等离子体共振条件下形成驻波等离子体波。3D 等离子体耦合的实现能够在很宽的光谱范围内(可见和近红外)对集体等离子体响应进行宽带调谐,并为设计等离子体超材料提供了一种途径。