School of Materials Engineering, Purdue University, West Lafayette, IN, 47907, USA.
Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, NM, 87545, USA.
Adv Mater. 2019 Feb;31(7):e1806529. doi: 10.1002/adma.201806529. Epub 2018 Dec 21.
Complex multiphase nanocomposite designs present enormous opportunities for developing next-generation integrated photonic and electronic devices. Here, a unique three-phase nanostructure combining a ferroelectric BaTiO , a wide-bandgap semiconductor of ZnO, and a plasmonic metal of Au toward multifunctionalities is demonstrated. By a novel two-step templated growth, a highly ordered Au-BaTiO -ZnO nanocomposite in a unique "nanoman"-like form, i.e., self-assembled ZnO nanopillars and Au nanopillars in a BaTiO matrix, is realized, and is very different from the random three-phase ones with randomly arranged Au nanoparticles and ZnO nanopillars in the BaTiO matrix. The ordered three-phase "nanoman"-like structure provides unique functionalities such as obvious hyperbolic dispersion in the visible and near-infrared regime enabled by the highly anisotropic nanostructures compared to other random structures. Such a self-assembled and ordered three-phase nanocomposite is obtained through a combination of vapor-liquid-solid (VLS) and two-phase epitaxy growth mechanisms. The study opens up new possibilities in the design, growth, and application of multiphase structures and provides a new approach to engineer the ordering of complex nanocomposite systems with unprecedented control over electron-light-matter interactions at the nanoscale.
复杂的多相纳米复合材料设计为开发下一代集成光子学和电子学器件提供了巨大的机会。在这里,展示了一种独特的三相纳米结构,该结构结合了铁电 BaTiO 、宽带隙半导体 ZnO 和等离子体金属 Au,以实现多功能性。通过新颖的两步模板生长,实现了高度有序的 Au-BaTiO-ZnO 纳米复合材料,其具有独特的“纳米人”形状,即自组装的 ZnO 纳米柱和 BaTiO 基体中的 Au 纳米柱,与随机三相结构有很大不同,后者的 Au 纳米颗粒和 ZnO 纳米柱在 BaTiO 基体中随机排列。有序的三相“纳米人”形状提供了独特的功能,例如与其他随机结构相比,在可见光和近红外区域具有明显的双曲色散,这得益于各向异性的纳米结构。这种自组装和有序的三相纳米复合材料是通过汽-液-固(VLS)和两相外延生长机制结合获得的。该研究为多相结构的设计、生长和应用开辟了新的可能性,并提供了一种新方法来工程复杂纳米复合材料系统的有序性,从而可以对纳米尺度上的电子-光-物质相互作用进行前所未有的控制。