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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Fast transformation of a rare-earth doped luminescent sub-microcrystal via plasmonic nanoislands
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Fast transformation of a rare-earth doped luminescent sub-microcrystal via plasmonic nanoislands

机译:通过等离子体纳米岛稀土掺杂发光子微晶的快速变换

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摘要

An efficient and fast transformation scheme for the matrix crystal of rare-earth doped luminescent micro-nanomaterials is developed by using plasmonic gold/silver nanoislands. The transformation is realized through an oxidation reaction from a polycrystalline sub-microcrystal to a single crystal, accompanied by the optimization of the crystal structure and a significant increase in luminescence. The crystal transformation can be achieved in tens of milliseconds, and the rate is controlled not only by the laser illumination power and wavelength, but also by the size and nanogap of nanoislands. Particularly, single crystal transformation is also achieved even at very low temperature, which provides a new way to obtain single crystal materials in a harsh environment. Moreover, the crystal transformation efficiency of the gold plasmonic islands is very stable in air over at least three months. This plasmon driven crystal transformation rapidly provides highly crystalline nanomaterials, which breaks the dependence of high temperature, long period and high energy consumption in the traditional annealing treatment.
机译:通过使用等离子体金/银纳米尼岛开发了稀土掺杂微纳米材料基质晶体的高效和快速变化方案。通过从多晶亚微晶到单晶的氧化反应实现转化,伴随着晶体结构的优化和发光显着增加。晶体变换可以以几十毫秒实现,并且不仅通过激光照明功率和波长来控制速率,而且由纳米岛的大小和纳米隙控制。特别地,即使在非常低的温度下也可以实现单晶转换,这提供了在恶劣环境中获得单晶材料的新方法。此外,金等离子体岛的晶体变换效率在空气中非常稳定,至少三个月。该等离子体驱动的晶体变换迅速提供高度结晶的纳米材料,其在传统的退火处理中断开高温,长期和高能耗的依赖性。

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