Serveur d'exploration sur l'Indium - Analysis (Chine)

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W. L. Zhu < W. Lei < W. Li  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 8.
Ident.Authors (with country if any)Title
000C67 (2009) Two-step growth of a hierarchical ZnO nanostructure by aqueous thermal decomposition in a neutral solution and its photovoltaic property
000F58 (2009) Alloy phase separation in InAs/InAlAs/InP nanostructure superlattices studied by finite element calculation
001009 (2008) Temperature dependence of surface quantum dots grown under frequent growth interruption
001579 (2006) Optical properties of self-assembled InAs/InAlAs/InP quantum wires with different InAs deposited thickness
001598 (2006) Kinetic Monte Carlo simulation of spatially ordered growth of quantum dots on patterned substrate
001687 (2006) Anomalous temperature dependence of photoluminescence peak energy in InAs/InAlAs/InP quantum dots
001713 (2005) The effect of In content on high-density InxGa1-xAs quantum dots
001791 (2005) Influence of rapid thermal annealing on InAs/InAlAs/InP quantum wires with different InAs deposited thickness

List of associated KwdEn.i

Nombre de
documents
Descripteur
6Indium arsenides
5Molecular beam epitaxy
5Photoluminescence
4Growth mechanism
4Quantum dots
3Aluminium arsenides
3Temperature effects
2Growth rate
2III-V semiconductors
2Indium phosphides
2Inorganic compounds
2Nanostructures
2Optical properties
2Quantum wires
2Semiconductor materials
2Size effect
2Stress effects
2Thickness
2Transmission electron microscopy
1Atomic force microscopy
1Chromium
1Crystal growth
1Crystal growth from vapors
1Dark conductivity
1Defect formation
1Density
1Dislocations
1Doping
1Electrical properties
1Experimental result
1Experimental study
1Finite element method
1Fluctuations
1Gallium arsenides
1Growth from solution
1Heterostructures
1High temperature
1III-V compound
1Impurity density
1Indium phosphide
1Interdiffusion
1Interrupts
1Kinetics
1Lamellar structure
1Laser materials
1Modulation
1Monolayers
1Monte Carlo methods
1Nanorod
1Nanostructure
1Nanostructured materials
1Nanowires
1Ordering
1Phase separation
1Photoexcitation
1Photovoltaic conversion
1Quantum dot lasers
1Rapid thermal annealing
1Scanning electron microscopy
1Segregation
1Selective growth
1Self-assembled layers
1Self-assembly
1Silicon additions
1Solar cell
1Spacer
1Superlattices
1Surface morphology
1Temperature dependence
1Thermal decomposition
1Thermal stability
1Thermal stresses
1Transition elements
1Ultrathin films
1Wetting
1Yield
1Zinc oxide

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