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Gold Nanoparticles Sliding on Recyclable Nanohoodoos—Engineered for Surface‐Enhanced Raman Spectroscopy
Authors:Kaiyu Wu  Tao Li  Michael Stenbæk Schmidt  Tomas Rindzevicius  Anja Boisen  Sokol Ndoni
Affiliation:1. Department of Micro‐ and Nanotechnology, Technical University of Denmark, Kgs. Lyngby, Denmark;2. DNRF and Villum Fonden Center for Intelligent Drug Delivery and Sensing Using Microcontainers and Nanomechanics, IDUN, Technical University of Denmark, Kgs. Lyngby, Denmark;3. Department of Electronic & Electrical Engineering, University College London, London, UK;4. DNRF Center for Nanostructured Graphene, CNG, Technical University of Denmark, Kgs. Lyngby, Denmark
Abstract:Robust, macroscopically uniform, and highly sensitive substrates for surface‐enhanced Raman spectroscopy (SERS) are fabricated using wafer‐scale block copolymer lithography. The substrate consists of gold nanoparticles that can slide and aggregate on dense and recyclable alumina/silicon nanohoodoos. Hot‐spot engineering is conducted to maximize the SERS performance of the substrate. The substrate demonstrates remarkably large surface‐averaged SERS enhancements, greater than 107 (>108 in hot spots), with unrivalled macroscopic signal uniformity as characterized by a coefficient of variation of only 6% across 4 cm. After SERS analyses, the nanohoodoos can be recycled by complete removal of gold via a one‐step, simple, and robust wet etching process without compromising performance. After eight times of recycling, the substrate still exhibits identical SERS performance in comparison to a new substrate. The macroscopic uniformity combined with recyclability at conserved high performance is expected to contribute significantly on the overall competitivity of the substrates. These findings show that the gold nanoparticles sliding on recyclable nanohoodoo substrate is a very strong candidate for obtaining cost‐effective, high‐quality, and reliable SERS spectra, facilitating a wide and simple use of SERS for both laboratorial and commercial applications.
Keywords:block copolymer lithography  large‐area SERS uniformity  recyclable  SERS substrates  surface‐enhanced Raman spectroscopy
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