Chemistry of Materials · 2018 · 52 citations · 35 references
EngineeringHgse CoresColloidal NanocrystalsOptoelectronic DevicesSpectroscopic PropertySemiconductor NanostructuresSemiconductorsIi-vi SemiconductorElectronic DevicesOptical PropertiesQuantum DotsQuantum MaterialsIntraband TransitionMaterials SciencePhotoluminescencePhysicsNanotechnologyIntraband EmissionsOptoelectronic MaterialsNanocrystalline MaterialNanomaterialsApplied PhysicsCondensed Matter PhysicsOptoelectronics
Mid-infrared core/shell quantum dots are synthesized starting with HgTe and HgSe cores which emit around 5 μm with interband and intraband transitions, respectively. HgTe/CdTe and HgSe/CdX (X = S, Se, and Te) are grown by colloidal atomic layer deposition at room temperature. HgSe/CdSe is also grown by hot-injection. For films of the core/shells, even a two-monolayer shell leads to a vastly improved stability against annealing, with no observable changes up to the alloying temperatures of ∼180 °C for HgTe/CdTe and ∼250 °C for HgSe/CdX. The improvement in the photoluminescence remains however small for all systems. In this study across interband and intraband emissions, the brightest emitter at 5 μm is the intraband transition of HgSe/CdSe with a quantum yield of ∼10–3.
35
Xinhua Zhong, Ming‐Yong Han, Zhili Dong et al. · Journal of the American Chemical Society · 2003 · 552 citations
Materials Science, High-quality Zn, Functional Nanomaterials +14
Mid-infrared HgTe colloidal quantum dot photodetectors
Sean Keuleyan, Emmanuel Lhuillier, Vuk Brajuskovic et al. · Nature Photonics · 2011 · 470 citations