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Zinc sulfide

Catalog No. 96512 Name Sigma Aldrich
CAS Number 1314-98-3 Website http://www.sigmaaldrich.com
M. F. SZn Telephone 1-800-521-8956
M. W. 97.445 Fax
Purity 99% Email
Storage Chembase ID: 105738

SYNONYMS

Title
硫化锌
IUPAC name
sulfanylidenezinc
IUPAC Traditional name
zinc sulfide
Synonyms
Zinc sulphide

DATABASE IDS

CAS Number 1314-98-3
MDL Number MFCD00011301

PROPERTIES

MSDS Link Download
Personal Protective Equipment Eyeshields, Gloves, type N95 (US), type P1 (EN143) respirator filter
German water hazard class 3
Grade coating quality
Linear Formula ZnS
Particle Size 1.5-5 mm
Purity 99%
Apperance granular
Density 4.1 g/mL at 25 °C(lit.)

DETAILS

Description (简体中文)
Application
Uses:
• Preparation of flexible transparent conductive coatings essential for fabrication of a variety of printed electronic devices such as flexible displays and solar cells1
• Prepare a composite CdS-ZnS/Zirconium-titanium phosphate (ZTP) photocatalyst for hydrogen production under visible light2
• Prepare light-controlled bioelectrochemical sensors based on CdSe/ZnS quantum dots3
• Catalyst for photocatalytic degradation of organic pollutants4
• Preparation of color tunable light-emitting diodes (LEDs)5
• Prepare (CdS-ZnS)-TiO2 combined photocatalysts for electricity production via photoelectrocatalysis6
• Catalyst for synthesis of spirooxindole derivatives in aqueous medium via Knoevenagel condensation followed by Michael addition7
• Prepare CdSe/ZnS q uantum dots for chemiluminescent and chemiluminescence resonance energy transfer (CRET) detection of DNA, metal ions, and aptamer-substrate complexes8
• Preparation of ZnS nanocrystals for ultrasensitive protein detection in terms of multiphonon resonance Raman scattering9
Description (English)
Application
Uses:
• Preparation of flexible transparent conductive coatings essential for fabrication of a variety of printed electronic devices such as flexible displays and solar cells1
• Prepare a composite CdS-ZnS/Zirconium-titanium phosphate (ZTP) photocatalyst for hydrogen production under visible light2
• Prepare light-controlled bioelectrochemical sensors based on CdSe/ZnS quantum dots3
• Catalyst for photocatalytic degradation of organic pollutants4
• Preparation of color tunable light-emitting diodes (LEDs)5
• Prepare (CdS-ZnS)-TiO2 combined photocatalysts for electricity production via photoelectrocatalysis6
• Catalyst for synthesis of spirooxindole derivatives in aqueous medium via Knoevenagel condensation followed by Michael addition7
• Prepare CdSe/ZnS q uantum dots for chemiluminescent and chemiluminescence resonance energy transfer (CRET) detection of DNA, metal ions, and aptamer-substrate complexes8
• Preparation of ZnS nanocrystals for ultrasensitive protein detection in terms of multiphonon resonance Raman scattering9

REFERENCES