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Atomfair Cesium Lead Tribromide (Low water content) Br3CsPb
Description Cesium Lead Tribromide (Low Water Content) is a high-purity inorganic compound with the molecular formula Br3CsPb , designed for advanced research and industrial applications. This material is synthesized under stringent conditions to minimize water content, ensuring optimal performance in sensitive applications such as optoelectronics and photovoltaics. With a CAS number of 15243-48-8 , it is characterized by its crystalline structure and excellent stability under controlled environments. Ideal for perovskite solar cell research, quantum dot synthesis, and luminescent materials, this product meets the rigorous demands of scientists and engineers working on next-generation technologies. Each batch undergoes thorough quality control to…
Description
Description
Cesium Lead Tribromide (Low Water Content) is a high-purity inorganic compound with the molecular formula Br3CsPb, designed for advanced research and industrial applications. This material is synthesized under stringent conditions to minimize water content, ensuring optimal performance in sensitive applications such as optoelectronics and photovoltaics. With a CAS number of 15243-48-8, it is characterized by its crystalline structure and excellent stability under controlled environments. Ideal for perovskite solar cell research, quantum dot synthesis, and luminescent materials, this product meets the rigorous demands of scientists and engineers working on next-generation technologies. Each batch undergoes thorough quality control to guarantee consistency, purity, and reliability for your experimental needs.
- CAS No: 15243-48-8
- Molecular Formula: Br3CsPb
- Molecular Weight: 580
- Exact Mass: 579.63507
- Monoisotopic Mass: 577.63712
- SMILES: Br[Pb](Br)Br.[Cs]
- Synonyms: Cesium Lead Tribromide (Low water content), Cesium Lead(II) Bromide, SY237613, CS-0214102
Application
Cesium Lead Tribromide (Low Water Content) is primarily used in the development of perovskite solar cells due to its excellent light absorption and charge transport properties. It also serves as a key precursor in the synthesis of quantum dots for display technologies and optoelectronic devices. Researchers utilize this compound to study and enhance the stability and efficiency of halide perovskite materials. Its low water content makes it particularly suitable for moisture-sensitive applications in advanced material science.
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