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Surface functionalized 3D printed metal structures as next generation recyclable SERS substrates

journal contribution
posted on 2024-11-03, 11:10 authored by Uzma Malik, Roxanne Hubesch, Paramita KoleyParamita Koley, Maciej MazurMaciej Mazur, Sunil Mehla, Sai Butti, Milan BrandtMilan Brandt, Selvakannan PeriasamySelvakannan Periasamy, Suresh BhargavaSuresh Bhargava
Combining the design flexibility and rapid prototyping capabilities of additive manufacturing with photocatalytic and plasmonic functionalities is promising for the development of next-generation SERS applications such as point of care diagnostics and in situ monitoring of chemical reactions in fuels and chemical processing. Laser powder bed fusion (LPBF) is a well-matured additive manufacturing technique which generates metallic structures through localised melting and joining of metal powders using a laser. LPBF reduces material wastage during manufacturing, is applicable to a wide range of metals and alloys, and allows printing of complex internal structures. This feature article elaborates the use of soot templating, chemical vapour deposition and electroless plating techniques for grafting plasmonic and semiconductor nanoparticles on the surface of LPBF manufactured metallic substrates. The capability to fabricate different types of intricate metallic lattices using additive manufacturing is demonstrated and technical challenges in their adequate functionalization are elaborated. The developed methodology allows tailoring of the substrate structure, composition, morphology, plasmonic and photocatalytic activities and thus unveils a new class of recyclable SERS substrates.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1039/d3cc04154a
  2. 2.
    ISSN - Is published in 13597345

Journal

Chemical Communications

Volume

59

Issue

90

Start page

13406

End page

13420

Total pages

15

Publisher

Royal Society of Chemistry

Place published

United Kingdom

Language

English

Copyright

© 2023 The Royal Society of Chemistry.

Former Identifier

2006127917

Esploro creation date

2024-01-21

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