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Utilization of Plasmonic and Photonic Crystal Nanostructures for Enhanced Micro- and Nanoparticle Manipulation
Published on: September 27, 2011
Precise Control over the Spatial Arrangement of Copper Selenide on Au Nanobipyramids by Site-Selective Growth for
1Department of Chemistry and Biochemistry, George Mason University, Fairfax, Virginia 22030, United States.
Abstract:
Dual plasmonic heterostructures composed of gold nanoparticles (Au NPs) and nonstoichiometric copper chalcogenides (Cu2‑xE) have garnered attention for their unique electronic interactions between two intrinsically dissimilar constituent domains. However, the site-selective deposition of Cu2‑xE on Au NPs remains extremely challenging due to the difficulty in controlling nucleation and regioselective overgrowth. Herein, we propose a universal Selenide (Se)-mediated approach for precise spatial control of Cu2‑xSe on gold nano bipyramids (Au NBPs). By deliberately tuning the surfactant environment, Cu2‑xSe can be selectively deposited on one waist, both lateral sides, and tips of Au NBPs to form UFO-like, segregated islands, and spindle-like morphologies, respectively. Furthermore, the domain size of the Cu2‑xSe and the plasmonic properties of Au@Cu2‑xSe can be controlled by adjusting the amount of selenium (SeO2) precursor. This work establishes a new strategy for the rational design and fabrication of multicomponent functional nanoarchitectures with precisely controlled compositions and tailored plasmonic properties, thereby expanding their scope of applications.

