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Tuning structural motifs and alloying of bulk immiscible Mo-Cu bimetallic nanoparticles by gas-phase synthesis

机译:调优结构图案和合金的体积非混相Mo-Cu双金属纳米颗粒气相合成

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Nowadays bimetallic nanoparticles (NPs) have emerged as key materials for important modern applications in nanoplasmonics, catalysis, biodiagnostics, and nanomagnetics. Consequently the control of bimetallic structural motifs with specific shapes provides increasing functionality and selectivity for related applications. However, producing bimetallic NPs with well controlled structural motifs still remains a formidable challenge. Hence, we present here a general methodology for gas phase synthesis of bimetallic NPs with distinctively different structural motifs ranging at a single particle level from a fully mixed alloy to core-shell, to onion (multi-shell), and finally to a Janus/dumbbell, with the same overall particle composition. These concepts are illustrated for Mo-Cu NPs, where the precise control of the bimetallic NPs with various degrees of chemical ordering, including different shapes from spherical to cube, is achieved by tailoring the energy and thermal environment that the NPs experience during their production. The initial state of NP growth, either in the liquid or in the solid state phase, has important implications for the different structural motifs and shapes of synthesized NPs. Finally we demonstrate that we are able to tune the alloying regime, for the otherwise bulk immiscible Mo-Cu, by achieving an increase of the critical size, below which alloying occurs, closely up to an order of magnitude. It is discovered that the critical size of the NP alloy is not only affected by controlled tuning of the alloying temperature but also by the particle shape.
机译:现在双金属纳米颗粒(NPs)成为重要的现代化的关键材料应用程序在nanoplasmonics、催化biodiagnostics, nanomagnetics。双金属的控制结构图案特定的形状提供了增加功能相关应用程序和选择性。然而,生产双金属NPs与好控制结构图案仍然是一个艰巨的挑战。气相合成的一般方法双金属NPs与鲜明的不同在单粒子结构图案等从一个完全混合合金核壳,洋葱(multi-shell),最后一个Janus /哑铃,用相同的粒子组成。Mo-Cu NPs,精确的控制双金属NPs与不同程度的化学物质排序,包括不同的形状球形立方体,是通过调整NPs能量和热环境在他们的生产经验。NP增长状态,在液体或固态阶段,具有重要的意义不同结构的图案和形状NPs合成。能够优化合金政权,对吗否则大部分非混相Mo-Cu,通过实现一个下面的关键尺寸,增加合金发生密切的订单大小。NP合金的大小不仅影响但控制优化合金的温度颗粒形状也。

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