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Updated: Jan 7, 2026

Seeded Synthesis of CdSe/CdS Rod and Tetrapod Nanocrystals
Published on: December 11, 2013
Shell Engineering of ITO Nanocrystals via Seed-Mediated Growth and Precursor Crowding for Broadband Visible-
Priyadarshi Ranjan1,2,3, Luca Rebecchi3, Anjana Panangattil Muraleedharan3
1Istituto Italiano di Tecnologia-->, Genova 16163, Italy.
Abstract:
Seed-mediated growth strategies provide a powerful platform for constructing complex nanocrystal architectures by enabling controlled shell deposition on preformed cores. Here, we report a modular synthesis of multicomponent metal oxide nanocrystals featuring compositionally modulated core-shell architectures. Specifically, indium tin oxide (ITO) nanocrystals are engineered through sequential shelling combined with tunable precursor crowdinga strategy analogous to molecular crowdingthat reinforces the local precursor concentration near the nanocrystal surface. This environment promotes diffusion-limited growth and enables anisotropic shell formation along with controlled incorporation of otherwise inaccessible transition metal dopants. Undoped shells transform from quasi-spherical to faceted cuboidal morphologies via directional crystallization, while codoping with Fe and Ni disrupts anisotropic growth and introduces visible-light absorption. Unlike conventional doping strategies, our approach yields broadband-active oxide nanocrystals with spatially controlled composition. These findings establish a versatile class of functional oxide heterostructures with tunable visible-to-NIR absorption.

