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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Thin films composed of Au nanoparticles embedded in AlN: Influence of metal concentration and thermal annealing on the LSPR band
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Thin films composed of Au nanoparticles embedded in AlN: Influence of metal concentration and thermal annealing on the LSPR band

机译:由嵌入ALN的Au纳米粒子组成的薄膜:LSPR带上金属浓度和热退火的影响

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摘要

Nanocomposite thin films, with noble nanoparticles dispersed in a dielectric matrix, are known to present unique optical properties. Based on the Localized Surface Plasmon Resonance (LSPR) phenomenon, these "nanoplasmonic" materials are the basis of a wide range of technological applications, namely (bio)molecular LSPR-sensors. They are regulated by the concentration, size, shape and distribution of the nanoparticles and dielectric environment properties. In this work, the possibility of using aluminium nitride (AlN) as a host dielectric matrix for LSPR films was evaluated. For this purpose, nanocomposite Au:AlN films were prepared by magnetron sputtering, followed by thermal annealing to promote the growth of the nanoparticles. Three sets of films were deposited with atomic Au concentrations of 2.2, 4.4 and 6.0 at.%. LSPR bands appeared from the temperature of 500 degrees C, with resonance positions of 520-540 nm. The films showed potential to be tested in LSPR-sensing applications due to their optical responses.
机译:纳米复合薄膜,具有分散在介电基质中的贵纳米颗粒,呈现独特的光学性质。基于局部表面等离子体共振(LSPR)现象,这些“纳米升性”材料是各种技术应用的基础,即(BIO)分子LSPR-传感器。它们由纳米颗粒和介电环境特性的浓度,尺寸,形状和分布调节。在这项工作中,评价使用氮化铝(ALN)作为LSPR膜的宿主介电基质的可能性。为此目的,纳米复合AU:通过磁控溅射制备ALN薄膜,然后进行热退火以促进纳米颗粒的生长。用22,4.4和6.0的原子Au浓度沉积三组薄膜。%。 LSPR带从500摄氏度的温度出现,具有520-540nm的谐振位置。由于光学响应,薄膜显示出在LSPR感测应用中进行测试。

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