Bismuth Lead Strontium Calcium Copper Oxide Powder provided by Stanford Advanced Materials is a high-temperature superconducting material used in advanced electronics, power transmission, and magnetic applications due to its ability to conduct electricity with zero resistance at elevated temperatures.
Related Products: Bismuth Ferrite Nanoparticles / Nanopowder, Bismuth Ferrite Powder, Bismuth Antimony Telluride Powder
Bismuth Lead Strontium Calcium Copper Oxide Powder provided by Stanford Advanced Materials is a high-temperature superconducting material used in advanced electronics, power transmission, and magnetic applications due to its ability to conduct electricity with zero resistance at elevated temperatures.
Related Products: Bismuth Ferrite Nanoparticles / Nanopowder, Bismuth Ferrite Powder, Bismuth Antimony Telluride Powder
Bismuth lead strontium calcium copper oxide powder is known by its acronym BSCCO. It is a superconducting, high-temperature material that might conduct electricity without resistance at considerably higher temperatures than typical superconductors. It is a compound consisting of complex oxides and is of a layered crystal structure responsible for its superconducting properties. The critical temperature, Tc, of BSCCO materials is widely appreciated as useful for applications at the temperature of liquid nitrogen. Together with the very high electrical conductivity, it is also an excellent advanced power transmission material due to the very strong magnetic flux pinning, and ideal for use in applications including magnetic levitation and a wide variety of electronic devices where high-efficiency energy use and the generation of strong magnetic fields is required.
Nominal Chemistry |
Bi2Ca2Cu2O11Pb2Sr2 |
CAS No |
116739-98-1 |
Purity |
>99% |
Appearance |
Fine black powder |
InChI Key |
CVRDXBKFTJIBID-UHFFFAOYSA-N |
1. Power Transmission: Used in superconducting cables for highly efficient power transmission with minimal energy loss, especially in large-scale power grids.
2. Magnetic Levitation: Employed in magnetic levitation (maglev) trains and other transport systems, where its strong superconducting properties allow for frictionless, high-speed travel.
3. Superconducting Magnets: Utilized in the construction of powerful superconducting magnets for medical imaging devices like MRI machines and in particle accelerators, where high magnetic fields are required.
4. Energy Storage: Integrated into superconducting magnetic energy storage (SMES) systems, which store and release large amounts of electrical energy rapidly, improving grid stability.
5. Advanced Electronics: Used in specialized electronic components that require high efficiency and low energy dissipation, such as filters and amplifiers in telecommunications.
Signal Word |
Warning |
Hazard Statements |
H302-H312-H315-H319-H335 |
WGK Germany |
3 |
Our Bismuth Lead Strontium Calcium Copper Oxide Powder is carefully handled during storage and transportation to preserve the quality of our product in its original condition.
Q1: What is the critical temperature (Tc) of Bismuth Lead Strontium Calcium Copper Oxide Powder?
A1: The critical temperature (Tc) of our BSCCO Powder typically ranges from 85 K to 110 K, depending on the specific composition and phase. This allows for superconductivity at liquid nitrogen temperatures.
Q2: How should Bismuth Lead Strontium Calcium Copper Oxide Powder be stored to maintain its superconducting properties?
A2: The powder should be stored in a cool, dry environment, away from moisture and contaminants. It’s best to keep it in airtight containers to prevent any degradation that could affect its superconducting performance.
Q3: Can BSCCO Powder be customized for specific applications?
A3: Yes, we offer customization options for particle size, composition, and other parameters to meet specific requirements for your research or industrial application. Please contact us to discuss your needs.