Indium(III) sulfide

99.99% metals basis

  • Product Code: 94821
  CAS:    12030-24-9
Molecular Weight: 325.83 g./mol Molecular Formula: In₂S₃
EC Number: 234-742-3 MDL Number: MFCD00011061
Melting Point: 1050°C Boiling Point:
Density: 4.45 g/cm3 Storage Condition: room temperature
Product Description: Indium(III) sulfide is primarily used in the field of optoelectronics due to its semiconductor properties. It is a key material in the fabrication of thin-film solar cells, where it helps in efficient light absorption and energy conversion. Additionally, it is utilized in the development of photodetectors and light-emitting diodes (LEDs), enhancing their sensitivity and performance. In the realm of nanotechnology, indium(III) sulfide serves as a crucial component in the synthesis of quantum dots, which are employed in advanced display technologies and biomedical imaging. Its ability to operate effectively in high-temperature environments also makes it suitable for use in thermoelectric devices, contributing to energy harvesting and cooling applications.
Product Specification:
Test Specification
PURITYBASED ON TRACE METALS ANALYSIS 99.99 100%
TRACE METAL ANALYSIS 0ppm 200ppm
APPEARANCE ORANGE TO RED-ORANGE POWDER
ICP CONFIRMS INDIUM AND SULFUR COMPONENTS CONFIRMED
X-RAY DIFFRACTION Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.500 10-20 days ฿940.00
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2.000 10-20 days ฿2,330.00
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10.000 10-20 days ฿7,560.00
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50.000 10-20 days ฿28,000.00
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Indium(III) sulfide
Indium(III) sulfide is primarily used in the field of optoelectronics due to its semiconductor properties. It is a key material in the fabrication of thin-film solar cells, where it helps in efficient light absorption and energy conversion. Additionally, it is utilized in the development of photodetectors and light-emitting diodes (LEDs), enhancing their sensitivity and performance. In the realm of nanotechnology, indium(III) sulfide serves as a crucial component in the synthesis of quantum dots, which are employed in advanced display technologies and biomedical imaging. Its ability to operate effectively in high-temperature environments also makes it suitable for use in thermoelectric devices, contributing to energy harvesting and cooling applications.
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