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超薄电化学生长的渐变折射率纳米多孔铂膜中的近红外-可见-紫外宽带吸收

NIR-ViS-UV broadband absorption in ultrathin electrochemically-grown, graded index nanoporous platinum films.

作者信息

Stanca Sarmiza-Elena, Rayapati Venkata R, Chakraborty Abhik, Dellith Jan, Fritzsche Wolfgang, Zieger Gabriel, Schmidt Heidemarie

机构信息

Leibniz Institute of Photonic Technology, Albert-Einstein-Straße 9, 07745, Jena, Germany.

Institute of Solid State Physics, Friedrich-Schiller- Universität Jena, Helmholtzweg 3, 07743, Jena, Germany.

出版信息

Sci Rep. 2024 Sep 30;14(1):22709. doi: 10.1038/s41598-024-73204-2.

Abstract

Nanoporous platinum broadband absorber has attracted interest in thermosensorics and IR photodetection due to its unique properties. In this work we report the physical mechanism underlying broadband absorption in electrochemically-grown, nanoporous Pt films by analyzing NIR-ViS-UV spectral ellipsometry data of nanoporous Pt films in dependence on the Pt film thickness (27, 35, 38, 48 nm). For the two thinner films a single layer model with a graded optical index Pt surface layer was used. For the two thicker films a two-layer optical model with a constant optical index Pt substrate layer and a graded optical index Pt surface layer was used. The graded optical index of the Pt surface layer reduces surface reflectivity and the constant optical index Pt substrate layer supports multiple reflections in the Pt film. Finally, we relate the thickness dependent optical index with the nanostructure of the nanoporous Pt film, which can be controlled in the electrochemical growth process. We observed that while in the transverse plane the multilayer exhibits graded refractive index, in the top horizontal planes the multilayer assembly exhibits discontinuous refractive index values due to the distribution of platinum crystal islands in air, which allows a metamaterial behavior of the whole system.

摘要

纳米多孔铂宽带吸收器因其独特性能在热传感和红外光探测领域引起了关注。在这项工作中,我们通过分析纳米多孔铂薄膜在近红外-可见光-紫外光谱椭偏测量数据(该数据取决于铂薄膜厚度(27、35、38、48纳米)),报告了电化学生长的纳米多孔铂薄膜中宽带吸收的物理机制。对于两个较薄的薄膜,使用了具有渐变光学指数铂表面层的单层模型。对于两个较厚的薄膜,使用了具有恒定光学指数铂基底层和渐变光学指数铂表面层的双层光学模型。铂表面层的渐变光学指数降低了表面反射率,而恒定光学指数铂基底层支持铂薄膜中的多次反射。最后,我们将厚度依赖的光学指数与纳米多孔铂薄膜的纳米结构相关联,该纳米结构可在电化学生长过程中得到控制。我们观察到,虽然在横向平面中多层结构呈现渐变折射率,但在顶部水平平面中,由于铂晶体岛在空气中的分布,多层组件呈现不连续的折射率值,这使得整个系统具有超材料行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f12/11442651/0d75ce237b81/41598_2024_73204_Fig1_HTML.jpg

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