Chukavin et al., 2019 - Google Patents
Observation of excitons at room temperature in ZnSxSe1-x nanostructures embedded in a porous Al2O3 templateChukavin et al., 2019
- Document ID
- 8970500784456010144
- Author
- Chukavin A
- Valeev R
- Beltiukov A
- Publication year
- Publication venue
- Materials Chemistry and Physics
External Links
Snippet
This work presents the phenomenon of dielectric confinement of the excitons of quasi-zero- dimensional nanostructures of a ZnS x Se 1-x solid solution in a dielectric template of porous anodic aluminum oxide (AАО), which are synthesized by a simple method of vacuum …
- 239000002086 nanomaterial 0 title abstract description 28
Classifications
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B31/00—Carbon; Compounds thereof
- C01B31/02—Preparation of carbon; Purification; After-treatment
- C01B31/04—Graphite, including modified graphite, e.g. graphitic oxides, intercalated graphite, expanded graphite or graphene
- C01B31/0438—Graphene
- C01B31/0446—Preparation
-
- C—CHEMISTRY; METALLURGY
- C30—CRYSTAL GROWTH
- C30B—SINGLE-CRYSTAL-GROWTH; UNIDIRECTIONAL SOLIDIFICATION OF EUTECTIC MATERIAL OR UNIDIRECTIONAL DEMIXING OF EUTECTOID MATERIAL; REFINING BY ZONE-MELTING OF MATERIAL; PRODUCTION OF A HOMOGENEOUS POLYCRYSTALLINE MATERIAL WITH DEFINED STRUCTURE; SINGLE CRYSTALS OR HOMOGENEOUS POLYCRYSTALLINE MATERIAL WITH DEFINED STRUCTURE; AFTER-TREATMENT OF SINGLE CRYSTALS OR A HOMOGENEOUS POLYCRYSTALLINE MATERIAL WITH DEFINED STRUCTURE; APPARATUS THEREFOR
- C30B29/00—Single crystals or homogeneous polycrystalline material with defined structure characterised by the material or by their shape
- C30B29/60—Single crystals or homogeneous polycrystalline material with defined structure characterised by the material or by their shape characterised by shape
- C30B29/605—Products containing multiple oriented crystallites, e.g. columnar crystallites
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B82—NANO-TECHNOLOGY
- B82Y—SPECIFIC USES OR APPLICATIONS OF NANO-STRUCTURES; MEASUREMENT OR ANALYSIS OF NANO-STRUCTURES; MANUFACTURE OR TREATMENT OF NANO-STRUCTURES
- B82Y30/00—Nano-technology for materials or surface science, e.g. nano-composites
-
- H—ELECTRICITY
- H01—BASIC ELECTRIC ELEMENTS
- H01L—SEMICONDUCTOR DEVICES; ELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H01L21/00—Processes or apparatus adapted for the manufacture or treatment of semiconductor or solid state devices or of parts thereof
- H01L21/02—Manufacture or treatment of semiconductor devices or of parts thereof
- H01L21/02104—Forming layers
- H01L21/02365—Forming inorganic semiconducting materials on a substrate
- H01L21/02518—Deposited layers
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Yang et al. | Twinned Zn2TiO4 spinel nanowires using ZnO nanowires as a template | |
Abdulgafour et al. | ZnO nanocoral reef grown on porous silicon substrates without catalyst | |
Kim et al. | Hydrothermal fabrication of well-ordered ZnO nanowire arrays on Zn foil: room temperature ultraviolet nanolasers | |
Muradov et al. | Growth process and investigation of some physical properties of CdS nanocrystals formed in polymer matrix by successive ionic layer adsorption and reaction (SILAR) method | |
Pandey et al. | Structural and optical properties of bulk MoS2 for 2D layer growth | |
Khodair et al. | Investigation on the structural and optical properties of copper doped NiO nanostructures thin films | |
Báez-Rodríguez et al. | ZnO nanocolumns synthesized by chemical bath process and spray pyrolysis: ultrasonic and mechanical dispersion of ZnO seeds and their effect on optical and morphological properties | |
Sharma et al. | Effect of substrate temperature on the characteristics of α-MoO3 hierarchical 3D microspheres prepared by facile PVD process | |
Safeera et al. | Low temperature fabrication and characterization of wurtzite structured ZnS quantum dots by chemical spray pyrolysis | |
Sathyamoorthy et al. | Facile synthesis of PbS nanorods induced by concentration difference | |
He et al. | Vertically well-aligned ZnO nanowires generated with self-assembling polymers | |
Mazher et al. | Strained ZnSe nanostructures investigated by x-ray diffraction, atomic force microscopy, transmission electron microscopy and optical absorption and luminescence spectroscopy | |
Ponnusamy et al. | Spectroscopic visualization of intermediate phases during CVD synthesis of MoS2 | |
Ma et al. | Facile method to prepare CdS nanostructure based on the CdTe films | |
Yu et al. | Synthesis and characterization of the ultra-thin SnS flakes and the micron-thick SnS crystals by chemical vapor deposition | |
Chukavin et al. | Observation of excitons at room temperature in ZnSxSe1-x nanostructures embedded in a porous Al2O3 template | |
Chen et al. | The synthesis and identification of complete stacking bilayer MoS2 flakes with unconventional shapes via chemical vapor deposition | |
Kaushik et al. | A study of size dependent structure, morphology and luminescence behavior of CdS films on Si substrate | |
Shim et al. | Growth and optical properties of aluminum-doped zinc oxide nanostructures on flexible substrates in flexible electronics | |
Guo et al. | Controllable synthesis of MoS2 nanostructures from monolayer flakes, few-layer pyramids to multilayer blocks by catalyst-assisted thermal evaporation | |
Hafeez et al. | Morphology tuned ZnS nanostructures for hydrogen gas sensing | |
Lebib et al. | Structural and luminescent characteristics of porous GaAs | |
Shahzad et al. | Observation of photoluminescence from large-scale layer-controlled 2D ß-Cu2S synthesized by the vapor-phase sulfurization of copper thin films | |
Palani et al. | Influence of Sb in synthesize of ZnO nanowire using sandwich type substrate in carbothermal evaporation method | |
Logu et al. | Growth of N type CuInS2 microspheres on P type CuInS2 seed layer prepared using facile low cost chemical methods |