研究目的
Investigating the effects of tungsten doping and mesoporous structure on the thermochromic properties of VO2 films for smart window applications.
研究成果
The 0.4 at% W-doped mesoporous VO2 nanocrystals based composite films exhibited enhanced thermochromic performance with high luminous transmittance (61.6%), excellent solar modulation efficiency (11.4%), and a low phase transition temperature (43 oC). The mesoporous structure facilitated uniform W dopant distribution and improved optical properties, offering a promising approach for smart window applications.
研究不足
The study focuses on the synthesis and characterization of W-doped mesoporous VO2 nanocrystals and their films. The practical application in smart windows may require further optimization regarding durability, scalability, and cost-effectiveness.
1:Experimental Design and Method Selection:
The study employed a hydrothermal method with absorbent cotton as a template and ammonium tungstate as a W dopant to prepare W-doped mesoporous VO2 nanocrystals. The powders were then mixed with PVP and spin-coated on glass substrates to form films.
2:Sample Selection and Data Sources:
The samples were characterized using XRD, TEM, HRTEM, FE-SEM, BET analyzer, XPS, DSC, and UV-vis-NIR spectrophotometer to analyze their structure, morphology, and thermochromic properties.
3:List of Experimental Equipment and Materials:
Equipment included XRD (D8DISCOVER), HRTEM (JEM-2100F STEM/EDS), FE-SEM (JSM-7500F), BET analyzer (ASAP 2020), XPS (ESCALAB 250Xi), DSC (DSC8500), and UV-vis-NIR spectrophotometer (UV-3600). Materials included V2O5, ethanedioic acid dehydrate, ammonium tungstate, ethylene glycol, ammonia solution, and PVP.
4:0). Materials included V2O5, ethanedioic acid dehydrate, ammonium tungstate, ethylene glycol, ammonia solution, and PVP. Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: The synthesis involved hydrothermal treatment, calcination, and reduction processes. The films were prepared by spin-coating and characterized for their optical and thermal properties.
5:Data Analysis Methods:
The thermochromic performance was evaluated based on luminous transmittance (Tlum) and solar modulation efficiency (ΔTsol), calculated from transmittance spectra.
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High-resolution transmission electron microscopy
JEM-2100F STEM/EDS
Japan JEOL
Obtain TEM and HRTEM images of the powders
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Field emission scanning electron microscopy
JSM-7500F
Japan JEOL
Observe the morphology of the prepared samples
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Differential scanning calorimeter
DSC8500
American PE
Examine the phase transition temperature of the powder
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X-ray diffraction
D8DISCOVER
Determine the phase structures of the powders
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BET analyzer
ASAP 2020
Measure the pore size distribution and the specific surface area
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X-ray photoelectron spectroscopy
ESCALAB 250Xi
Detect the chemical valences of elements in the powders
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UV–vis–NIR spectrophotometer
UV-3600
Measure the thermochromic performance of the films
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