Publication | Open Access
Highly Luminescent (Zn,Cd)Te/CdSe Colloidal Heteronanowires with Tunable Electron–Hole Overlap
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Citations
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References
2012
Year
EngineeringHighly LuminescentColloidal NanocrystalsOptoelectronic DevicesChemistryLuminescence PropertySemiconductor NanostructuresIi-vi SemiconductorNanostructure SynthesisMaterials ScienceHeteronanowire CompositionNanotechnologyCd Cation ExchangeOptoelectronic MaterialsElectronic MaterialsNanomaterialsApplied PhysicsNanoarchitectonicsTe/cdse Colloidal Heteronanowires
We report the synthesis of ultranarrow (Zn,Cd)Te/CdSe colloidal heteronanowires, using ZnTe magic size clusters as seeds. The wire formation starts with a partial Zn for Cd cation exchange, followed by self-organization into segmented heteronanowires. Further growth occurs by inclusion of CdSe. The heteronanowires emit in the 530 to 760 nm range with high quantum yields. The electron-hole overlap decreases with increasing CdSe volume fraction, allowing the optical properties to be controlled by adjusting the heteronanowire composition.
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