Charles University, Faculty of Mathematics and Physics, Department of Macromolecular Physics, Prague, 182 00, Czech Republic.
Kiel University, Faculty of Engineering, Chair for Multicomponent Materials, 24143, Kiel, Germany.
Sci Rep. 2017 Aug 17;7(1):8514. doi: 10.1038/s41598-017-08274-6.
Nanoparticles composed of multiple silver cores and a plasma polymer shell (multicore@shell) were prepared in a single step with a gas aggregation cluster source operating with Ar/hexamethyldisiloxane mixtures and optionally oxygen. The size distribution of the metal inclusions as well as the chemical composition and the thickness of the shells were found to be controlled by the composition of the working gas mixture. Shell matrices ranging from organosilicon plasma polymer to nearly stoichiometric SiO were obtained. The method allows facile fabrication of multicore@shell nanoparticles with tailored functional properties, as demonstrated here with the optical response.
采用氩气/六甲基二硅氧烷混合气体并可选配氧气,通过气体聚团簇源一步制备了由多个银核和等离子体聚合物壳组成的纳米颗粒(多芯@壳)。金属夹杂的尺寸分布以及壳的化学成分和厚度均由工作气体混合物的组成控制。得到了从有机硅等离子体聚合物到近乎化学计量比的 SiO 的壳基质。该方法可方便地制备具有定制功能特性的多芯@壳纳米颗粒,这里通过光学响应进行了演示。