Levin Carly S, Hofmann Cristina, Ali Tamer A, Kelly Anna T, Morosan Emilia, Nordlander Peter, Whitmire Kenton H, Halas Naomi J
Department of Chemistry, Rice University, Houston, TX 77251-1892, USA.
ACS Nano. 2009 Jun 23;3(6):1379-88. doi: 10.1021/nn900118a.
Nanoparticles composed of magnetic cores with continuous Au shell layers simultaneously possess both magnetic and plasmonic properties. Faceted and tetracubic nanocrystals consisting of wustite with magnetite-rich corners and edges retain magnetic properties when coated with a Au shell layer, with the composite nanostructures showing ferrimagnetic behavior. The plasmonic properties are profoundly influenced by the high dielectric constant of the mixed iron oxide nanocrystalline core. A comprehensive theoretical analysis that examines the geometric plasmon tunability over a range of core permittivities enables us to identify the dielectric properties of the mixed oxide magnetic core directly from the plasmonic behavior of the core-shell nanoparticle.
由具有连续金壳层的磁芯组成的纳米颗粒同时具有磁性和等离子体特性。由具有富磁铁矿角和边缘的方铁矿组成的多面和四方纳米晶体在涂覆金壳层时保留磁性,复合纳米结构表现出亚铁磁性行为。等离子体特性受到混合氧化铁纳米晶核高介电常数的深刻影响。一项全面的理论分析研究了一系列核介电常数范围内的几何等离子体可调性,使我们能够直接从核壳纳米颗粒的等离子体行为中识别混合氧化物磁核的介电特性。