Published July 29, 2025 | Version Version 1
Dataset Open

Directional light scattering in Mie-resonant Si particles with ultra-thin Au shells

  • 1. ROR icon Institut de Chimie de la Matière Condensée de Bordeaux

Contributors

Data curator:

  • 1. ROR icon Institut de Chimie de la Matière Condensée de Bordeaux

Description

In the present work, we present Au-decorated Si core-shell (Si@Au) particles, which show enhanced forward scattering compared to Mie-resonant Si particles alone. TEM images show the synthesized Si particles with size dispersity and the Au-decorated Si particles. The UV-Vis-NIR spectra and EDX spectroscopy further confirm the synthesis of Si@Au particles. The Si core sizes are between 100 – 200 nm, while the Au particles with 4 nm diameter form the shell. Electron energy-loss spectroscopy (EELS) mapping and optical single-particle backward-scattering spectroscopy confirm the resonant behavior of the core-shell particles. These observations were supported by T-matrix simulations and Mie-theory calculations of the scattering spectra, which show that Si and Si@Au particles demonstrate a dampened magnetic dipole resonance for smaller sizes (100 – 130 nm) and an enhanced magnetic dipole resonance for larger Si particle sizes (150 – 200 nm).

Files

Data_Set_PhDThesis_IdowuEO_ReadMe_20250729_V0.txt

Files (4.1 MB)

Name Size Download all
md5:64f988ea71d578eaaa0f9b7409dcb63c
88.7 kB Download
md5:bcd8e12f73c9842be51f13d81b07ea3a
120.0 kB Download
md5:1ec3d437b6dba0a94a7c070b257dbe7e
220.7 kB Download
md5:38c271dd2ca0db955de3ccdc4b00257a
60.6 kB Download
md5:235168030556222cbd7fec0aba67c261
651.8 kB Download
md5:3268658304df6400dde8839b35280fb6
68.1 kB Download
md5:75bfda2bf3cb61de8a508b6e2ebf334f
19.3 kB Download
md5:a76791629e988377e65a273fa9533684
9.2 kB Download
md5:8c77bdf098d446bf8fbbdac136d43d42
76.1 kB Download
md5:e1949ece5f52a458447bdf98a6d74cf1
1.2 MB Download
md5:9e18abc74f5b40faa64b99ba0fd52153
1.5 MB Download
md5:5dcdedf35ed253e5a2c65729aa54a7b7
68.0 kB Download
md5:a6c3397192a12336ff8046c236c0a87e
7.8 kB Preview Download

Additional details

Related works

Is published in
Journal article: 10.1002/adom.202502529 (DOI)

Funding

European Commission
SCATTER - Bottom-up fabrication of nanostructured silicon-based materials with unprecedented optical properties 948319

Dates

Collected
2025-07-23