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Femtosecond laser reshaping yields gold nanorods with ultranarrow surface plasmon resonances
288
Citations
60
References
2017
Year
Materials SciencePlasmonicsNanoparticlesEngineeringPhysicsNanomaterialsNanotechnologyYields Gold NanorodsGold Nanorod ColloidsApplied PhysicsNatural SciencesSurface-enhanced Raman ScatteringColloidal NanocrystalsMetal NanoparticlesChemistryFemtosecond LaserIrradiation FluencePlasmonic Material
The irradiation of gold nanorod colloids with a femtosecond laser can be tuned to induce controlled nanorod reshaping, yielding colloids with exceptionally narrow localized surface plasmon resonance bands. The process relies on a regime characterized by a gentle multishot reduction of the aspect ratio, whereas the rod shape and volume are barely affected. Successful reshaping can only occur within a narrow window of the heat dissipation rate: Low cooling rates lead to drastic morphological changes, and fast cooling has nearly no effect. Hence, a delicate balance must be achieved between irradiation fluence and surface density of the surfactant on the nanorods. This perfection process is appealing because it provides a simple, fast, reproducible, and scalable route toward gold nanorods with an optical response of exceptional quality, near the theoretical limit.
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