Publication | Open Access
Synthesis and Optical Properties of Cu2CoSnS4 Colloidal Quantum Dots
66
Citations
26
References
2011
Year
Optical MaterialsEngineeringMetal NanoparticlesColloidal NanocrystalsChemistryTailored Cu2cosns4 PrecursorLuminescence PropertyOptical PropertiesQuantum DotsNanostructure SynthesisHybrid MaterialsMaterials SciencePhotoluminescenceNanotechnologyPhotonic MaterialsAcid PeptizationNanocrystalline MaterialPhotoluminescence EmissionNanomaterialsFunctional Materials
Monodisperse quaternary chalcopyrite Cu2CoSnS4 colloidal quantum dots have been synthesized by acid peptization of a tailored Cu2CoSnS4 precursor displaying loosely packed, ultrafine primary crystallites. Well-defined peaks shifted to higher energy compared to the Cu2CoSnS4 bulk band gap value were observed on the UV-Vis absorption curve consistent with a quantum confinement behavior. First investigations by room temperature time resolved photoluminescence (TRPL) spectroscopy suggest that the photoluminescence emission does not arise from a donor–acceptor recombination.
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