Tailoring core size, shell thickness, and aluminum doping of Au@AZO core@shell nanoparticles

21 October 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

Plasmonic materials, such as gold nanoparticles (AuNPs), exhibit significant extinction and near-field enhancement across the visible and near-infrared spectrum, attributable to localized surface plasmon resonances (LSPRs). Epsilon-near-zero (ENZ) materials, such as aluminum doped zinc oxide (AZO) are known in non-linear optics for their ability to generate and manipulate light-matter interactions through processes like higher harmonic generation. Combining doped ZnO with plasmonic materials therefore holds promise for enhancing non-linear efficiencies and tuning their operational wavelengths. To date, however, only top-down structures based on plasmonically decorated thin ENZ films have been realized, and no colloidal and scalable route to obtain these hybrid materials has been reported yet. Here, we introduce a novel colloidal synthesis approach for fabricating Au@AZO core@shell nanoparticles with tunable core size, shell thickness, and dopant concentration, allowing for the spectral alignment of the LSPRs of the AuNPs with the non-linear optical properties of the AZO shells. Our method involves the colloidal synthesis of gold cores followed by a controlled sol-gel process to deposit ZnO and AZO shells, resulting in core diameters ranging from 25 to 69 nm, shell thicknesses from 16 to 47 nm, and aluminum doping levels between 0 and 4 at.%. Our procedure widens the range of hybrid plasmonic nanostructures that can be colloidally synthesized, opening new possibilities for the large scale fabrication of high-performance nanomaterials for integration in photonic, photocatalytic, and sensing applications.

Keywords

Plasmonics
Aluminum doped zinc oxide
core@shell
colloidal synthesis
plasmonic hybrid materials
non-linear optics
epsilon-near-zero

Supplementary materials

Title
Description
Actions
Title
Supporting Information Tailoring core size, shell thickness, and aluminum doping of Au@AZO core@shell nanoparticles
Description
Supporting Information Tailoring core size, shell thickness, and aluminum doping of Au@AZO core@shell nanoparticles X-Ray Diffraction measurement; extinction spectra of Au@ZnO with different core sizes before and after hydrothermal synthesis; in situ addition of acidic Aluminum nitrate; in situ addition of pH-neutralized Aluminum nitrate; comparison of infusion in acidic and pH neutralized Aluminum nitrate; Effect of remaining surfactant in washing step (PDF)
Actions

Comments

Comments are not moderated before they are posted, but they can be removed by the site moderators if they are found to be in contravention of our Commenting Policy [opens in a new tab] - please read this policy before you post. Comments should be used for scholarly discussion of the content in question. You can find more information about how to use the commenting feature here [opens in a new tab] .
This site is protected by reCAPTCHA and the Google Privacy Policy [opens in a new tab] and Terms of Service [opens in a new tab] apply.