Makarevich et al., 2020 - Google Patents
Hydrothermal epitaxy growth of self-organized vanadium dioxide 3D structures with metal–insulator transition and THz transmission switch propertiesMakarevich et al., 2020
View PDF- Document ID
- 6940721981677149580
- Author
- Makarevich A
- Makarevich O
- Ivanov A
- Sharovarov D
- Eliseev A
- Amelichev V
- Boytsova O
- Gorodetsky A
- Navarro-Cia M
- Kaul A
- Publication year
- Publication venue
- CrystEngComm
External Links
Snippet
The hydrothermal method is the most effective approach for the synthesis of VO2 metastable polymorphs with unique powder crystallite morphology. In this work, we expanded the capabilities of this method, directing it to the growth of oriented crystallites in self-organized …
- GRUMUEUJTSXQOI-UHFFFAOYSA-N vanadium dioxide data:image/svg+xml;base64,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 data:image/svg+xml;base64,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 O=[V]=O 0 title abstract description 18
Classifications
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2002/00—Crystal-structural characteristics
- C01P2002/70—Crystal-structural characteristics defined by measured X-ray, neutron or electron diffraction data
- C01P2002/72—Crystal-structural characteristics defined by measured X-ray, neutron or electron diffraction data by d-values or two theta-values, e.g. as X-ray diagram
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2004/00—Particle morphology
- C01P2004/80—Particles consisting of a mixture of two or more inorganic phases
- C01P2004/82—Particles consisting of a mixture of two or more inorganic phases two phases having the same anion, e.g. both oxidic phases
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2002/00—Crystal-structural characteristics
- C01P2002/30—Three-dimensional structures
- C01P2002/32—Three-dimensional structures spinel-type (AB2O4)
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2004/00—Particle morphology
- C01P2004/60—Particles characterised by their size
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2006/00—Physical properties of inorganic compounds
- C01P2006/80—Compositional purity
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2002/00—Crystal-structural characteristics
- C01P2002/80—Crystal-structural characteristics defined by measured data other than those specified in group C01P2002/70
- C01P2002/85—Crystal-structural characteristics defined by measured data other than those specified in group C01P2002/70 by XPS, EDX or EDAX data
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2006/00—Physical properties of inorganic compounds
- C01P2006/12—Surface area
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2002/00—Crystal-structural characteristics
- C01P2002/50—Solid solutions
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01P—INDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
- C01P2006/00—Physical properties of inorganic compounds
- C01P2006/40—Electric properties
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01G—COMPOUNDS CONTAINING METALS NOT COVERED BY SUBCLASSES C01D OR C01F
- C01G23/00—Compounds of titanium
- C01G23/003—Titanates, e.g. titanates of two or more metals other than titanium
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01G—COMPOUNDS CONTAINING METALS NOT COVERED BY SUBCLASSES C01D OR C01F
- C01G55/00—Compounds of ruthenium, rhodium, palladium, osmium, iridium, or platinum
- C01G55/002—Compounds containing, besides ruthenium, rhodium, palladium, osmium, iridium, or platinum, two or more other elements, with the exception of oxygen or hydrogen
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01G—COMPOUNDS CONTAINING METALS NOT COVERED BY SUBCLASSES C01D OR C01F
- C01G25/00—Compounds of zirconium
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Warwick et al. | Advances in thermochromic vanadium dioxide films | |
Makarevich et al. | Hydrothermal epitaxy growth of self-organized vanadium dioxide 3D structures with metal–insulator transition and THz transmission switch properties | |
Ji et al. | Infrared thermochromic properties of monoclinic VO 2 nanopowders using a malic acid-assisted hydrothermal method for adaptive camouflage | |
Ji et al. | Preparation of high performance pure single phase VO2 nanopowder by hydrothermally reducing the V2O5 gel | |
Valmalette et al. | High efficiency thermochromic VO2 (R) resulting from the irreversible transformation of VO2 (B) | |
Mahmood et al. | Sol–gel synthesis of tetragonal ZrO 2 nanoparticles stabilized by crystallite size and oxygen vacancies | |
Powell et al. | Direct and continuous synthesis of VO 2 nanoparticles | |
Jacob et al. | Structural and morphological studies of nano-crystalline ceramic BaSr 0.9 Fe 0.1 TiO 4 | |
Zou et al. | A low-temperature synthesis of monoclinic VO 2 in an atmosphere of air | |
Kim et al. | High-throughput roll-to-roll fabrication of flexible thermochromic coatings for smart windows with vo 2 nanoparticles | |
Baldinozzi et al. | Crystal structure and characterisation of cadmium cyanamide | |
Ji et al. | Thermochromic VO2 films by thermal oxidation of vanadium in SO2 | |
Ashika et al. | Combustion synthesis of CuO nanomaterials: effect of different fuels on the structural, thermal, and optical properties | |
Macedo Jr et al. | Microwave-assisted hydrothermal synthesis followed by heat treatment: A new route to obtain CaZrO3 | |
El Aakib et al. | Preparation and characterization of nanocomposite of Co: CuO by radio-frequency sputtering for solar selective absorber application | |
Bahamirian et al. | Synthesis and characterization of yttria-stabilized zirconia nanoparticles doped with ytterbium and gadolinium: ZrO2 9.5 Y2O3 5.6 Yb2O3 5.2 Gd2O3 | |
Ali et al. | Structural and optical properties of wet-chemistry Cu co-doped ZnTiO3 thin films deposited by spin coating method | |
Chen et al. | A/B sites Co-doping in spinel oxide enabled by a high-entropy strategy for enhanced thermal radiation | |
Menzler et al. | Materials synthesis and characterization of 8YSZ nanomaterials for the fabrication of electrolyte membranes in solid oxide fuel cells | |
Ivanov et al. | Citrate-assisted hydrothermal synthesis of vanadium dioxide textured films with metal-insulator transition and infrared thermochromic properties | |
Sayari et al. | Structural and optical characterization of Ni and Al co-doped ZnO nanopowders synthesized via the sol-gel process | |
Jung et al. | Fabrication of pure monoclinic VO2 nanoporous nanorods via a mild pyrolysis process | |
Saleh et al. | EFFECT OF OXYGEN FLOW RATE ON STRUCTURAL AND OPTICAL PROPERTIES OF SnO 2 THIN FILMS PREPARED BY APCVD TECHNIQUE. | |
Chang et al. | Orthorhombic Ta3-xN5-yOy thin films grown by unbalanced magnetron sputtering: The role of oxygen on structure, composition, and optical properties | |
Guan et al. | Carbon-reduction as an easy route for the synthesis of VO 2 (M1) and further Al, Ti doping |