Enhanced structural and phase stability of titania inverse opals
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- Type
- article
- Published
- 2015-10-01
- Cited by
- 23
- References
- 36
- OpenAlex
- https://openalex.org/W303762375
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137693277
Keywords
Materials science, Inverse, Phase (matter), Stability (learning theory), Composite material
References
- Topotaxy in the anatase-rutile transformation
- Facile deposition of YSZ-inverse photonic glass films.
- High-Temperature Photonic Structures. Thermal Barrier Coatings, Infrared Sources and Other Applications
- Thermodynamic analysis of phase stability of nanocrystalline titania
- Synthesis and characterisation of macroporous Yttria Stabilised Zirconia (YSZ) using polystyrene spheres as templates
- Design of wide-angle solar-selective absorbers using aperiodic metal-dielectric stacks.
- Highly crystalline inverse opal transition metal oxides via a combined assembly of soft and hard chemistries.
- Rutile TiO2 inverse opal with photonic bandgap in the UV-visible range.
- Physical stabilization of anatase (TiO2) byfreeze-drying
- Electrodeposited 3D Tungsten Photonic Crystals with Enhanced Thermal Stability
- Mechanism of crystal structure transformations. Part 3. Factors affecting the anatase-rutile transformation
- A nanophotonic solar thermophotovoltaic device.
- Phase Transformation Studies in TiO2 Supporting Different Defect Mechanisms in Vacuum‐Reduced and Hydrogen‐Reduced Rutile
- Review of the anatase to rutile phase transformation
- Three-dimensional self-assembled photonic crystals with high temperature stability for thermal emission modification
- Fabrication and Characterization of Large Macroporous Photonic Crystals in Titania
- Reactive re-oxidation of reduced TiO2(110) surfaces demonstrated by high temperature STM movies
- Effect of Dopants on Grain Coalescence and Oxygen Mobility in Nanostructured Titania Anatase and Rutile
- Preparation and Characterization of Macroporous a-Alumina
- Size dependence of the kinetic rate constant for phase transformation in TiO2 nanoparticles
Cited by
- A kinetic model for two-step phase transformation of hydrothermally treated nanocrystalline anatase
- Bottom-up Fabrication of Multilayer Stacks of 3D Photonic Crystals from Titanium Dioxide.
- Highly porous α-Al 2 O 3 ceramics obtained by sintering atomic layer deposited inverse opals
- Facile design and stabilization of a novel one-dimensional silicon-based photonic crystal microcavity
- Sol-Gel Chemistry of Inverse Opals
- Low‐Temperature Mullite Formation in Ternary Oxide Coatings Deposited by ALD for High‐Temperature Applications
- Photonic crystal-assisted visible light activated TiO2 photocatalysis
- High‐temperature stable inverse opal photonic crystals via mullite‐sol‐gel infiltration of direct photonic crystals
- Photonic materials for high-temperature applications: Synthesis and characterization by X-ray ptychographic tomography
- Advancing the fabrication of YSZ-inverse photonic glasses for broadband omnidirectional reflector films
- Development of inverse photonic crystals using mullite or alumina/mullite coatings
- Influence of pores arrangement on stability of photonic structures during sintering
- Improved thermal stability of zirconia macroporous structures via homogeneous aluminum oxide doping and nanostructuring using atomic layer deposition
- Direct writing of colloidal suspensions onto inclined surfaces: Optimizing dispense volume for homogeneous structures.
- Influence of Alumina Addition on the Optical Properties and the Thermal Stability of Titania Thin Films and Inverse Opals Produced by Atomic Layer Deposition
- Tailoring Disorder and Quality of Photonic Glass Templates for Structural Coloration by Particle Charge Interactions.
- Functionalization of Carbon Electrodes with Nanotitania by Atomic Layer Deposition
- Mullite photonic glasses with exceptional thermal stability for novel reflective thermal barrier coatings
- Study on nonreciprocal radiation and photothermal conversion of VO2-based tunable inverse opal thermal emitter
- Enhanced Photocatalytic Properties and Photoinduced Crystallization of TiO2–Fe2O3 Inverse Opals Fabricated by Atomic Layer Deposition
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