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大面积金纳米点阵列在任意衬底上的等离子体激元活性。

Plasmonic activity of large-area gold nanodot arrays on arbitrary substrates.

机构信息

Leibniz Institute of Surface Modification, Permoserstrasse 15, Leipzig, Germany.

出版信息

Nano Lett. 2010 Jan;10(1):47-51. doi: 10.1021/nl903633z.

Abstract

Highly efficient fabrication of well-ordered, embedded gold nanodot matrices using diffraction mask projection laser ablation is demonstrated. These gold nanodot arrays are ideally generated onto sapphire substrates but do also form onto AlO(x) thin films, enabling the application to arbitrary bulk substrates. Well-ordered gold dots become embedded into the Al(2)O(3) substrate during the process, thus improving their mechanical stability, chemical inertness, and technological compliance. Such substrates may be useful, for example, to enhance solar-cell efficiency by surface plasmons or as convenient, biocompatible focusing elements in nearfield optical tweezers.

摘要

利用衍射掩模投影激光烧蚀技术高效制备有序嵌入金纳米点矩阵。这些金纳米点阵列理想地生成在蓝宝石衬底上,但也可以形成在 AlO(x) 薄膜上,从而可以应用于任意块状衬底。在这个过程中,有序的金点嵌入到 Al(2)O(3) 衬底中,从而提高了它们的机械稳定性、化学惰性和技术适应性。这样的衬底例如可以通过表面等离激元来提高太阳能电池的效率,或者作为近场光学镊子中方便、生物兼容的聚焦元件。

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