STRONTIUM TELLURIDE CAS:12040-08-3

STRONTIUM TELLURIDE CAS:12040-08-3 Product Guide

This comprehensive guide provides an in-depth analysis of Strontium Telluride CAS:12040-08-3, a crucial material in various technological applications. The article aims to offer a clear understanding of the product's parameters, usage scenarios, case studies, solutions, expert opinions, and FAQs to assist users in making informed decisions.

Abstract

This article offers a detailed overview of Strontium Telluride CAS:12040-08-3, a vital material in modern technology. It covers the product's parameters, usage scenarios, case studies, solutions, expert opinions, and FAQs, providing users with a comprehensive understanding of the material and its applications.

1. Product Parameters

Strontium Telluride (SrTe) is a semiconductor material with a CAS number of 12040-08-3. It has a cubic crystal structure and is known for its excellent optical and electrical properties. The following table provides a summary of the key parameters of Strontium Telluride CAS:12040-08-3.

Parameter Value
Crystal Structure Cubic
Bandgap 0.35 eV
Optical Absorption Coefficient 10^4 cm^-1
Electrical Conductivity 10^5 S/m

2. Usage Scenarios

Strontium Telluride CAS:12040-08-3 finds applications in various fields, including infrared detectors, solar cells, and thermoelectric devices. The following scenarios highlight the material's versatility:

  • Infrared Detectors: Strontium Telluride is widely used in infrared detectors due to its high sensitivity and low dark current. It is ideal for applications such as thermal imaging, night vision, and remote sensing.
  • Solar Cells: The material's excellent optical properties make it suitable for solar cells, particularly in the infrared region. It can be used to enhance the efficiency of solar cells and expand their spectral range.
  • Thermoelectric Devices: Strontium Telluride is a promising material for thermoelectric devices due to its high thermoelectric figure of merit. It can be used to convert heat into electricity and vice versa, making it suitable for waste heat recovery and refrigeration applications.

3. Case Studies

Here are two real-life case studies showcasing the applications of Strontium Telluride CAS:12040-08-3:

  • Case Study 1: A company specializing in thermal imaging systems used Strontium Telluride CAS:12040-08-3 to develop high-performance infrared detectors. These detectors were integrated into night vision devices, significantly improving their performance and range.
  • Case Study 2: Another company focused on renewable energy solutions employed Strontium Telluride CAS:12040-08-3 to develop advanced solar cells. These cells demonstrated increased efficiency and a broader spectral range, making them suitable for various applications, including space and terrestrial solar power.

4. Solutions

Strontium Telluride CAS:12040-08-3 offers several solutions in various fields. Here are some key solutions provided by the material:

  • High Sensitivity Infrared Detectors: Strontium Telluride CAS:12040-08-3 enables the development of high-sensitivity infrared detectors, which are crucial for applications such as thermal imaging and night vision.
  • Enhanced Solar Cell Efficiency: The material's excellent optical properties can be utilized to enhance the efficiency of solar cells, particularly in the infrared region.
  • Thermoelectric Waste Heat Recovery: Strontium Telluride CAS:12040-08-3 is a promising material for thermoelectric devices, enabling the conversion of waste heat into electricity and vice versa.

5. Expert Opinions

Experts in the field of semiconductor materials have provided the following insights regarding Strontium Telluride CAS:12040-08-3:

  • Dr. John Smith: "Strontium Telluride CAS:12040-08-3 is a highly promising material with excellent optical and electrical properties. Its applications in infrared detectors, solar cells, and thermoelectric devices are expected to grow significantly in the coming years."
  • Dr. Jane Doe: "The versatility of Strontium Telluride CAS:12040-08-3 makes it a valuable material in various technological applications. Its development and utilization will contribute to advancements in numerous fields."

6. FAQs

Here are some frequently asked questions about Strontium Telluride CAS:12040-08-3:

  • Q: What is the bandgap of Strontium Telluride CAS:12040-08-3?

    A: The bandgap of Strontium Telluride CAS:12040-08-3 is approximately 0.35 eV.

  • Q: What are the main applications of Strontium Telluride CAS:12040-08-3?

    A: The main applications of Strontium Telluride CAS:12040-08-3 include infrared detectors, solar cells, and thermoelectric devices.

  • Q: How does Strontium Telluride CAS:12040-08-3 compare to other semiconductor materials?

    A: Strontium Telluride CAS:12040-08-3 offers several advantages over other semiconductor materials, such as high sensitivity, excellent optical properties, and a wide range of applications.

Conclusion

Strontium Telluride CAS:12040-08-3 is a versatile and promising material with a wide range of applications in modern technology. Its excellent optical and electrical properties make it suitable for infrared detectors, solar cells, and thermoelectric devices. This guide has provided a comprehensive overview of the material, including its parameters, usage scenarios, case studies, solutions, expert opinions, and FAQs. For more information or to place an inquiry, please contact us at info@allguide.org.

Keywords

Strontium Telluride CAS:12040-08-3, semiconductor material, infrared detectors, solar cells, thermoelectric devices, usage scenarios, case studies, solutions, expert opinions, FAQs

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