Issue 35, 2022

Multidimensional characterization of noble metal alloy nanoparticles by multiwavelength analytical ultracentrifugation

Abstract

In this study, we introduce a method for the simultaneous retrieval of two-dimensional size-composition distributions of noble metal Ag–Au alloy nanoparticles utilizing an analytical ultracentrifuge equipped with a multiwavelength extinction detector (MWL-AUC). MWL-AUC is used to measure coupled optical and sedimentation properties of the particles. The optical response of the nanoparticles is calculated using Mie's theory, where the particles’ complex refractive index is corrected due to the effect of reduced mean free path of electrons. Using a combined analysis of the hydrodynamic and spectral data captured by MWL-AUC, the size and composition of the alloy particles is retrieved. Our method is validated through the analysis of synthetic data and by the very good agreement between experimental scanning transmission electron microscopy and our AUC data. The presented comprehensive characterization approach contributes to improved synthesis, scale-up and production of particulate systems as it provides a simple, fast and direct method to determine noble metal alloy nanoparticle size and composition distributions simultaneously.

Graphical abstract: Multidimensional characterization of noble metal alloy nanoparticles by multiwavelength analytical ultracentrifugation

Supplementary files

Article information

Article type
Paper
Submitted
12 May 2022
Accepted
12 Aug 2022
First published
24 Aug 2022

Nanoscale, 2022,14, 12928-12939

Multidimensional characterization of noble metal alloy nanoparticles by multiwavelength analytical ultracentrifugation

P. Cardenas Lopez, M. J. Uttinger, N. E. Traoré, H. A. Khan, D. Drobek, B. Apeleo Zubiri, E. Spiecker, L. Pflug, W. Peukert and J. Walter, Nanoscale, 2022, 14, 12928 DOI: 10.1039/D2NR02633C

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