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Nanoporous Metals: From Plasmonic Properties to Applications in Enhanced Spectroscopy and Photocatalysis

期刊

ACS NANO
卷 15, 期 4, 页码 6038-6060

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.0c10945

关键词

plasmonics; nanoporous; nanoporous metals; SERS; localized surface plasmons; enhanced spectroscopy; enhanced fluorescence; photocatalysis

资金

  1. European Union under the Marie Sklodowska-Curie RISE project COMPASS [691185]
  2. National Science Foundation [IIP-1941227]
  3. Horizon 2020 Program, FET-Open: DNA-FAIRYLIGHTS [964995]

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This paper reviews the properties and potential applications of nanoporous metals as plasmonic materials, but lacks a detailed discussion on their connection with surface plasmons, enhanced spectroscopies, and photocatalysis.
The field of plasmonics is capable of enabling interesting applications in different wavelength ranges, spanning from the ultraviolet up to the infrared. The choice of plasmonic material and how the material is nanostructured has significant implications for ultimate performance of any plasmonic device. Artificially designed nanoporous metals (NPMs) have interesting material properties including large specific surface area, distinctive optical properties, high electrical conductivity, and reduced stiffness, implying their potentials for many applications. This paper reviews the wide range of available nanoporous metals (such as Au, Ag, Cu, Al, Mg, and Pt), mainly focusing on their properties as plasmonic materials. While extensive reports on the use and characterization of NPMs exist, a detailed discussion on their connection with surface plasmons and enhanced spectroscopies as well as photocatalysis is missing. Here, we report on different metals investigated, from the most used nanoporous gold to mixed metal compounds, and discuss each of these plasmonic materials' suitability for a range of structural design and applications. Finally, we discuss the potentials and limitations of the traditional and alternative plasmonic materials for applications in enhanced spectroscopy and photocatalysis.

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