Nano Research · 2020 · 22 citations · 35 references
EngineeringColloidal NanocrystalsElectronic PropertiesChemistryQds CouplingNanoscale ChemistryQuantum DotsCdse QdsNanostructure SynthesisLow-dimensional SystemMaterials ScienceQd DimersPhysicsNanotechnologyQuantum ChemistryNanocrystalline MaterialNanomaterialsNatural SciencesSelf-assemblyApplied PhysicsNanofabrication
Abstract Currently, intensive research efforts focus on the fabrication of meso-structures of assembled colloidal quantum dots (QDs) with original optical and electronic properties. Such collective features originate from the QDs coupling, depending on the number of connected units and their distance. However, the development of general methodologies to assemble colloidal QD with precise stoichiometry and particle-particle spacing remains a key challenge. Here, we demonstrate that dimers of CdSe QDs, stable in solution, can be obtained by engineering QD surface chemistry, reducing the surface steric hindrance and favoring the link between two QDs. The connection is made by using alkyl dithiols as bifunctional linkers and different chain lengths are used to tune the interparticle distance from few nm down to 0.5 nm. The spectroscopic investigation highlights that coupling phenomena between the QDs in dimers are strongly dependent on the interparticle distance and QD size, ultimately affecting the exciton dissociation efficiency.
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The Hydrophobic Effect: Formation of Micelles and Biological Membranes
C.H. Walker · FEBS Letters · 1981 · 2.7K citations
Emergence of colloidal quantum-dot light-emitting technologies
Yasuhiro Shirasaki, Geoffrey Supran, Moungi G. Bawendi et al. · Nature Photonics · 2012 · 2.6K citations · Full text
Photonics, Engineering, Physics +5
Dmitri V. Talapin, Andrey L. Rogach, Andreas Kornowski et al. · Nano Letters · 2001 · 1.5K citations
Materials Science, Nanocrystalline Material, Hexadecylamine−trioctylphosphine Oxide−trioctylphospine Mixture +13