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Rubidium Iodide
Molecular Formula:RbI
CAS NO.:7790-29-6

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Product Introduction
Molecular Formula : RbI
CAS NO. :
Product Introduction : rubidium iodide is colorless cubic crystal or white powder. molecular weight212.37, density 3.55 g/ml, melting point 647C, boiling point 1300 ℃ soluble in water, alcohol, liquid ammonia, slightly soluble in acetone, the aqueous solution is neutral or slightly alkaline.
Product Standards :
Use : the preparation of rubidium metal and a variety of rubidium salt of raw materials, catalyst production of micro high energy batteries and crystal scintillation counter, medicine for the treatment of syphilis.
Packing : 1kg/bottle, 25kg/drum, or packed on demand.
Colorless cubic crystals or white crystalline powder. Soluble in water, liquid, and slightly soluble in acetonitrile. Its aqueous solution is neutral or slightly alkaline. It is easily decomposed when exposed to air and light, and should be stored in a sealed container away from light. Solubility in water: 152 g/100 ml (17°C)
Density: 3.55
Melting point: 647℃
Boiling point: 1300℃
Standard: Enterprise standard
Natural/Synthetic: Synthetic
Grade: Industrial grade
Content: 99%
Appearance: White powder
Packaging: 25KG/cardboard barrel
Field: Chemical industry
Application Areas
Rubidium iodide (RbI) has a wide range of applications in many fields, mainly including optoelectronics, materials science, medicine and energy.
● Optoelectronics
Rubidium iodide has important applications in the optoelectronics field. Due to its high photoconductivity and photosensitivity, rubidium iodide is widely used in photoconductive devices, photoresistors and photoelectric sensors. In these devices, rubidium iodide can effectively convert light energy into electrical energy, achieving rapid response and accurate detection of optical signals. In addition, rubidium iodide is also used in fields such as semiconductor lasers and optoelectronic detectors. With the rapid development of electronic consumer products and communication equipment, its market demand is also increasing.
● Materials Science
In the field of materials science, rubidium iodide is used as a precursor to prepare a variety of high-performance materials. For example, rubidium iodide can be used as a key raw material for the synthesis of rubidium-based superconducting materials, providing important support for research in the field of superconductivity. In addition, rubidium iodide can also be used to prepare nonlinear optical materials and photocatalytic materials, providing a rich material selection for the research and development of optoelectronic devices.
● Medical field
In the medical field, rubidium iodide has certain application value. Due to its high radioactivity and biological activity, rubidium iodide can be used as a tracer for medical imaging and disease diagnosis. For example, in nuclear medicine, rubidium iodide can be used to prepare radioactive drugs, which can achieve precise positioning and quantitative analysis of diseased tissues through in vivo injection or oral administration. This provides doctors with a more accurate and intuitive basis for diagnosis, which helps to improve the diagnosis rate and treatment effect of diseases. In addition, rubidium iodide is also used to treat syphilis.
● Energy field
In the energy field, rubidium iodide has high ionic conductivity and electrochemical stability, and can be used as a potential solid electrolyte material in high-performance solid-state batteries. In addition, rubidium iodide can also be used to prepare new energy devices such as solar cells and fuel cells, providing technical support for the development and utilization of renewable energy.
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