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Sputtering onto a liquid: interesting physical preparation method for multi-metallic nanoparticles

机译:溅射到液体上:多金属纳米粒子的有趣物理制备方法

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摘要

The young history of sputtering onto a liquid features great achievements in the green production of various metal and metal oxide nanoparticles (NPs) and nanoclusters (NCs). Studies on how the sputtering parameters affect the properties of NPs and NCs have elucidated their formation mechanism and marked a crucial role of liquid matrix in the nucleation and growth of particles, controlling their various properties. Current research has been devoted to making alloy bi- and trimetallic NPs with a high level of control over the NP structure, composition, and size via well-designed target systems, sputtering steps, and liquid matrix materials. In this minireview, we discuss the recent advances in the use of various types of targets to prepare different bi- and trimetallic NPs. In single target sputtering, systems with alternative configurations of metals, alloy targets, monometallic targets in sequence, and a combination of sputtering and chemical reactions have been developed. On the other hand, a double head system was introduced to widen the range of controllable sputtering parameters yielding more versatility in particle composition and fine structure. The synergistic and tuneable properties exhibited by the multi-metallic components in small NPs and NCs for their use in catalysis and optical applications are discussed.
机译:溅射到液体上的年轻历史具有各种金属和金属氧化物纳米颗粒(NPS)和纳米蛋白(NCS)的绿色生产方面的巨大成就。关于溅射参数如何影响NPS和NCS的性质的研究阐述了它们的形成机制,并标志着液体基质在颗粒的成核和生长中的关键作用,控制其各种性质。目前的研究已经致力于通过精心设计的目标系统,溅射步骤和液体基质材料来制作具有高水平控制的合金Bi-and Trimetallic NPS,具有高水平的NP结构,组成和尺寸。在这次Minieview中,我们讨论了使用各种类型的目标来准备不同的双组和三足球NPS的最新进展。在单个靶溅射中,已经开发了具有替代配置的制备金属,合金靶标,单次靶标的序列,以及溅射和化学反应的组合。另一方面,引入了双头系统以加宽可控溅射参数的范围,从而产生颗粒组成和细结构的更通用性。讨论了小型NPS和NCS中的多金属组分表现出的协同和可调性,用于它们在催化和光学应用中使用。

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