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Nanopatterning and plasmonic properties of plasma sputtered gold on diatom frustules

机译:硅藻粉末溅射金的纳米透明度和等离子体溅射的等离子体性能

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Bio-silica nanostructures from diatoms (called frustules) featuring plasmonic gold nanoparticles (NPs) are elaborated using two methods based on plasma sputtering of gold. The first investigated method uses a thermal treatment to induce the thermal dewetting of a plasma sputtered gold layer on the diatom frustules. The second method first consists of coating the frustules with polyethylene glycol before sputtering gold on these frustules. For both methods, the amount of gold appears to be a key parameter regarding the final obtained layer, which can either be nanostructured by cavities or consist in individual gold NPs. For an amount of sputtered gold equivalent to form a 5 nm thick layer, both methods allow obtaining diatom frustules covered by gold NPs with a size around 20 nm and a narrow size distribution. The UV-visible characterization of the diatom frustules featuring gold NPs highlights a plasmon extinction band in agreement with individual gold NPs with a size below 25 nm.
机译:使用基于金属等离子体溅射的两种方法,阐述了来自硅藻(称为突发性)的生物二氧化硅纳米结构以血浆金纳米粒子(NPS)进行阐述。第一研究方法使用热处理,以诱导硅藻粉末上等离子体溅射金层的热脱模。第二种方法首先由在这些突发盘上溅射金之前用聚乙二醇涂覆与聚乙二醇的突发性。对于这两种方法,黄金的量似乎是关于最终所得层的关键参数,其可以通过空腔纳米结构或在单个金NPS中组成。对于相当于形成5nm厚层的溅射金的量,两种方法允许获得由金NP覆盖的硅藻粉末,尺寸约为20nm和窄尺寸分布。具有金NPS的硅藻粉体的UV可见表征突出了与尺寸低于25nm的单个金NPS的等离子体消光带。

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