4.8 Article

Plasmon Dynamics in Colloidal Au2Cd Alloy-CdSe Core/Shell Nanocrystals

Journal

ACS NANO
Volume 7, Issue 2, Pages 1045-1053

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/nn303764k

Keywords

colloidal nanocrystal heterostructures; plasmonic materials; plasmon bleaching dynamics; charge transfer fluorescence quenching; metal-semiconductor nanojunctions

Funding

  1. FP7 starting ERC Grant NANOARCH [240111]

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Metal semiconductor nanocrystal heterostructures are model systems for understanding the interplay between the localized surface plasmon resonances in the metal domain and the relaxation of the excited carriers in the semiconductor domain. Here we report the synthesis of colloidal Au2Cd (core)/CdSe (shell) nanocrystal heterostructures, which were characterized extensively with several structural and optical techniques, including time-resolved fluorescence and broad-band transient absorption spectroscopy (both below and above the CdSe band gap). The dynamics of the transient plasmon peak was dominated by the relaxation of hot carriers in the metal core, its spectral shape was independent of the pump wavelength, and the bleaching lifetime was about half a picosecond, comparable with the value found in the AuCd seeds used for the synthesis.

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