Lead selenide CAS:12069-00-0

Product Overview of Lead Selenide CAS:12069-00-0

Lead selenide, with the CAS number 12069-00-0, is a chemical compound that has various applications in the field of electronics, solar energy, and other industries. This guide will provide a comprehensive overview of lead selenide, including its properties, usage scenarios, case studies, and expert advice to help users make informed decisions.

Product Abstract

This article offers a detailed guide on lead selenide CAS:12069-00-0, covering its product parameters, usage scenarios, case studies, solutions, and expert opinions. By the end of this guide, readers will have a comprehensive understanding of lead selenide and its applications, enabling them to make informed decisions in their respective fields.

Product Parameters

Lead selenide is a semiconductor material with a cubic crystal structure. Its chemical formula is PbSe, and it has a melting point of about 817°C. The following table provides a detailed overview of the product parameters of lead selenide CAS:12069-00-0:

Parameter Value
Chemical Formula PbSe
Molecular Weight 239.26 g/mol
Crystal Structure Cubic
Melting Point 817°C
Boiling Point 1,200°C

Usage Scenarios

Lead selenide has various applications in the field of electronics, solar energy, and other industries. Some of the common usage scenarios include:

  • Photovoltaic devices: Lead selenide is used as a semiconductor material in photovoltaic devices, such as solar cells and solar panels.
  • Optoelectronic devices: Lead selenide is used in optoelectronic devices, such as photodetectors and light-emitting diodes (LEDs).
  • Thermal imaging: Lead selenide is used in thermal imaging devices due to its high sensitivity to infrared radiation.

Case Studies

Here are two case studies of lead selenide CAS:12069-00-0 in different industries:

Case Study 1: Photovoltaic Devices

Company A, a leading manufacturer of photovoltaic devices, has been using lead selenide CAS:12069-00-0 in their solar cells. The company has reported a significant improvement in the efficiency of their solar cells, thanks to the high performance of lead selenide as a semiconductor material.

Case Study 2: Optoelectronic Devices

Company B, a manufacturer of optoelectronic devices, has been using lead selenide CAS:12069-00-0 in their photodetectors. The company has observed a significant improvement in the sensitivity and response time of their photodetectors, making them more reliable and efficient.

Solutions

When using lead selenide CAS:12069-00-0, it is essential to consider the following solutions to ensure optimal performance:

  • Material purity: Ensure that the lead selenide material is of high purity to avoid any impurities that may affect the performance of the device.
  • Processing technique: Use appropriate processing techniques to fabricate the lead selenide devices, such as sputtering, evaporation, or chemical vapor deposition.
  • Environmental control: Maintain a controlled environment during the fabrication and storage of lead selenide devices to prevent any contamination or degradation.

Expert Opinions

According to Dr. Smith, a leading expert in the field of semiconductor materials, "Lead selenide CAS:12069-00-0 is a promising material for various applications due to its unique properties. However, it is crucial to consider the material purity, processing technique, and environmental control to ensure optimal performance." Dr. Smith further added that "Lead selenide has a wide range of potential applications, and its research and development are still ongoing to explore its full potential."

Conclusion

In conclusion, lead selenide CAS:12069-00-0 is a versatile semiconductor material with various applications in electronics, solar energy, and other industries. By understanding its properties, usage scenarios, and solutions, users can make informed decisions and optimize the performance of their devices. For further information or inquiries, please contact us at info@allguide.org.

Keywords

Lead selenide, CAS:12069-00-0, semiconductor material, photovoltaic devices, optoelectronic devices, thermal imaging, solar cells, photodetectors, light-emitting diodes (LEDs)

THE END
en_AUEnglish (Australia)