研究目的
Investigating the stabilization of aqueous CdTe quantum dots (QDs) in gypsum via a flocculation–precipitation method for their application in optoelectronic devices.
研究成果
The flocculation–precipitation method effectively encapsulates CdTe QDs in gypsum, significantly improving their stability and enabling their application in optoelectronic devices, such as WLEDs.
研究不足
The weight percent of CdTe QDs in gypsum is very low (less than 1%), and the size of the CdTe QDs is just about 3 nm, making it difficult to find CdTe QDs by TEM and SEM under experimental conditions.
1:Experimental Design and Method Selection:
A flocculation–precipitation method was employed to host CdTe QDs within gypsum.
2:Sample Selection and Data Sources:
Aqueous CdTe QDs were synthesized and then encapsulated in gypsum.
3:List of Experimental Equipment and Materials:
CdTe QDs, gypsum, Na2SO4, CaCl2, and other chemicals were used.
4:Experimental Procedures and Operational Workflow:
CdTe QDs were mixed with Na2SO4 and CaCl2 to form CdTe–gypsum nanocomposites, which were then filtered, washed, and dried.
5:Data Analysis Methods:
The stability and optical properties of the nanocomposites were analyzed using various spectroscopic techniques.
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Edinburgh FL 900 photon-counting system
FL 900
Edinburgh
Obtaining TCSPC data
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JEM-2100 field emission source transmission electron microscope
JEM-2100
JEOL
Acquiring TEM and HRTEM images of the CdTe QDs
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Rigaku D/MaxrB diffractometer
D/MaxrB
Rigaku
Recording X-ray diffraction patterns
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Shimadzu UV-2600 UV-vis spectrophotometer
UV-2600
Shimadzu
Obtaining UV absorbance spectra
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HitachiF-4600 fluorescence spectrophotometer
F-4600
Hitachi
Recording PL spectra
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Horiba FluoroMax-4 fluorescence spectrophotometer
FluoroMax-4
Horiba
Measuring PLQY
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Nicolet 6700 FTIR spectrometer
6700
Nicolet
Obtaining FTIR spectra
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Integrating sphere
Everfine Photo-E-Info Co., Ltd
Obtaining optical properties of the as-fabricated white LEDs
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