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Heterometallic Seed-Mediated Growth of Monodisperse Colloidal Copper Nanorods with Widely Tunable Plasmonic Resonances

Soojin Jeong, Yang Liu, Yaxu Zhong, Xun Zhan, Yuda Li, Yi Wang, Phoebe M. Cha, Jun Chen, Xingchen Ye

2020Nano Letters78 citationsDOI

Abstract

We report a heterometallic seed-mediated synthesis method for monodisperse penta-twinned Cu nanorods using Au nanocrystals as seeds. Elemental analyses indicate that resultant nanorods consist predominantly of copper with a gold content typically below 3 atom %. The nanorod aspect ratio can be readily adjusted from 2.8 to 13.1 by varying the molar ratio between Au seeds and Cu precursor, resulting in narrow longitudinal plasmon resonances tunable from 762 to 2201 nm. Studies of reaction intermediates reveal that symmetry-breaking is promoted by rapid nanoscale diffusion in Au-Cu alloys and the formation of a gold-rich surface. The growth pathway features coevolving shape and composition whereby nanocrystals become progressively enriched with Cu concomitant with nanorod growth. The availability of uniform colloidal Cu nanorods with widely tunable aspect ratios opens new avenues toward the synthesis of derivative one-dimensional metal nanostructures, and applications in surface-enhanced spectroscopy, bioimaging, and electrocatalysis, among others.

Topics & Concepts

NanorodMaterials scienceCopperPlasmonNanocrystalDispersitySurface plasmon resonanceNanotechnologyChemical engineeringNanostructureColloidNanoparticleSpectroscopyOptoelectronicsPolymer chemistryQuantum mechanicsMetallurgyEngineeringPhysicsGold and Silver Nanoparticles Synthesis and Applicationsnanoparticles nucleation surface interactionsCopper-based nanomaterials and applications
Heterometallic Seed-Mediated Growth of Monodisperse Colloidal Copper Nanorods with Widely Tunable Plasmonic Resonances | Litcius