Modulating the optical and electronic properties of highly symmetric Si quantum dots
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Summary
Three alternative ways to alter the optical response of highly stable, highly symmetric hydrogen-terminated fullerene and polycrystalline Si quantum dots are shown: small shape changes, applied uniaxial strain and exohedral doping.
- Type
- article
- Published
- 2009-11-04
- Cited by
- 3
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W19809111
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:26409472
Keywords
Business, Marketing
References
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- High level ab initio calculations of the optical gap of small silicon quantum dots.
- An all‐electron numerical method for solving the local density functional for polyatomic molecules
- Solution Synthesis of Ultrastable Luminescent Siloxane-Coated Silicon Nanoparticles
- Electronic Structure Pseudopotential Calculations of Large (.apprx.1000 Atoms) Si Quantum Dots
- Electronic and optical properties of polyicosahedral Si nanostructures : A first-principles study
- Photoluminescence quantum yields of amorphous and crystalline silicon nanoparticles
- Tight-binding calculation of the optical absorption cross section of spherical and ellipsoidal silicon nanocrystals
- First-principles investigation of strain effects on the energy gaps in silicon nanoclusters
- First-principles prediction of icosahedral quantum dots for tetravalent semiconductors
- Strain-engineered photoluminescence of silicon nanoclusters
- Doping semiconductor nanocrystals
- High-yield plasma synthesis of luminescent silicon nanocrystals.
- Theory of alkyl-terminated silicon quantum dots.
- Structural stability and optical properties of nanomaterials with reconstructed surfaces.
- Quantum Confinement in Size-Selected, Surface-Oxidized Silicon Nanocrystals
- Size Tunable Visible Luminescence from Individual Organic Monolayer Stabilized Silicon Nanocrystal Quantum Dots
- Plasma synthesis of single-crystal silicon nanoparticles for novel electronic device applications
- Electronic Structure and Luminescence of 1.1- and 1.4-nm Silicon Nanocrystals: Oxide Shell versus Hydrogen Passivation
Cited by
- Electromechanical characterization of quasi-one dimensional nanostructures of silicon, carbon, and molybdenum disulfide via symmetry-adapted tight-binding molecular dynamics.
- Tuning the electronic and optical properties of hydrogen-terminated Si nanocluster by uniaxial compression
- Screw Dislocations in ⟨100⟩ Silicon Nanowires: An Objective Molecular Dynamics Study
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