Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide

Lead(Ii) Iodide


Product Name    Lead(Ii) Iodide
Density    6.16g/mLat 25°C(lit.)
 Melting Point    402°C(lit.)
Boiling Point    954°C(lit.)
 Flash Point    954°C
 Water Solubility    Partially soluble in water. Freely soluble in sodium thiosulfate solution. Soluble in concentrated solutions of alkali iodides. Insoluble in alcohol and cold HCl.Soluble in concentrated solutions of a
 Storage Conditions    Keep in dark place,Inert atmosphere,Room temperature
Appearance    beads
Specific Gravity    6.16
 Color    Yellow to orange
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
  • Lead(Ii) Iodide
SPECIFICATION
The English name for Lead(II) Iodide is the same as the chemical name. An English alias or abbreviation for this compound might be "PbI2," using the chemical symbols for lead (Pb) and iodine (I)."Lead(II) Iodide, represented as PbI2, is a chemical compound with distinctive properties and applications. This yellow crystalline solid is recognized for its utility in photovoltaic devices, where it serves as a key component in the manufacture of solar cells. Due to its semiconducting properties, Lead(II) Iodide plays a crucial role in converting sunlight into electrical energy. Its application in solar technology underscores its significance in advancing renewable energy solutions. The compound's unique characteristics contribute to its role in the development of efficient solar cell materials, supporting innovations in the field of sustainable energy."
Feature
"Lead(II) Iodide, denoted as PbI2, possesses distinct characteristics that contribute to its varied applications. As a yellow crystalline solid, it is notably valued for its semiconducting properties, making it a key component in the production of solar cells. This compound exhibits efficiency in converting sunlight into electrical energy, emphasizing its role in photovoltaic technology. The unique characteristics of Lead(II) Iodide underscore its importance in the development of materials for solar cell applications, supporting advancements in renewable energy solutions."
Lead(Ii) IodideThe use of Lead(Ii) Iodide

Adhibition:
"Lead(II) Iodide, represented as PbI2, plays a crucial role in photovoltaic technology, specifically in the manufacturing of solar cells. As a semiconducting material, it efficiently converts sunlight into electrical energy, contributing to the advancement of renewable energy solutions. The application of Lead(II) Iodide in solar cell materials underscores its significance in supporting innovations and developments within the field of sustainable energy.
Lead(Ii) Iodide producer