Lead(II) Iodide (PbI₂) is a solid chemical compound widely used in various chemical experiments and scientific research. It is a key component in the synthesis of perovskite precursors, which are essential in the development of solar cells and optical materials. Due to its unique properties, PbI₂ is a preferred material in laboratories that require high precision and purity. Its high purity level of 9999% ensures minimal contamination, making it ideal for advanced research applications. This compound is particularly valuable for its reactivity with both organic and inorganic substances, enabling complex chemical reactions. Its crystalline structure and optical properties further enhance its utility in material science and optical research.
PbI₂ is known for its high chemical purity and reactivity, which make it a preferred choice in specialized laboratory settings. The compound is highly sensitive to moisture and air, necessitating careful handling and storage. Despite this, its stability under controlled conditions allows for consistent performance in experiments. The compound's ability to participate in a wide range of chemical reactions makes it versatile for various research applications. Its optical and structural characteristics also make it a valuable tool in the study of new materials and advanced technologies.
In Indonesian laboratories, PbI₂ is commonly used in the production of perovskite precursors for solar cell research. It is also utilized in material science studies due to its optical and structural properties. The compound's high purity and reactivity make it suitable for experiments requiring precision and reliability. Its role in both inorganic chemistry and catalytic processes highlights its importance in scientific research across multiple disciplines.
- Perovskite Precursor Synthesis: PbI₂ is essential for creating perovskite materials used in solar cell research due to its chemical reactivity and optical properties.
- Optical Material Research: The compound's crystalline structure and optical characteristics make it ideal for studying new optical materials and their applications.
- Inorganic Chemistry Experiments: PbI₂ is widely used in inorganic chemistry for its high purity and reactivity, enabling precise chemical reactions and material synthesis.
- Catalytic Processes: Its ability to interact with various substances makes it suitable for catalytic applications in chemical synthesis and material development.
- Advanced Material Development: PbI₂ is employed in the creation of new materials due to its unique physical and chemical properties that support innovation in material science.
| Brand | TCI |
|---|---|
| CAS number | 10101-63-0 |
| Molecular formula | — |
| Purity | — |
| Category | Chemistry > Catalysis and Inorganic Chemistry > Main-group Elements |
| Pack sizes | — |
| Physical form | Solid |
| Storage | — |
Lead(II) Iodide should be stored in a dry, cool, and well-ventilated area to prevent moisture absorption. It is recommended to use airtight containers made of glass or inert materials to minimize exposure to air and humidity. Due to its sensitivity, the compound should be handled with care, using appropriate personal protective equipment such as gloves and safety goggles. It is important to avoid contact with moisture and to ensure proper ventilation during handling. Storage conditions should be controlled to maintain its high purity and prevent degradation. Regular monitoring of storage conditions is essential to ensure the compound remains suitable for use in scientific research.
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