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CAS 19244-98-5

Guanidine Hydrobromide TCI G0449

Guanidine Hydrobromide TCI G0449
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Description

Guanidine Hydrobromide (TCI G0449), with CAS number 19244-98-5, is a chemical compound widely used in scientific research, particularly in the development of perovskite solar cells (PSCs). It serves as a crucial component in the synthesis of perovskite materials, which are gaining significant attention for their potential in renewable energy technologies. In the laboratory, this compound is essential for creating stable and efficient perovskite structures by providing a source of bromide ions. Its role is vital in the formation of the perovskite lattice, which is fundamental to the performance of solar cells.

One of the key reasons Guanidine Hydrobromide is preferred in laboratory settings is its chemical stability and controlled reactivity. It is a solid material that dissolves easily in organic solvents, making it convenient for various synthesis processes. Its high melting point ensures that it remains stable under different experimental conditions, allowing researchers to maintain precise control over reaction parameters. These properties make it a reliable choice for applications requiring high precision and reproducibility.

In Indonesian laboratories, Guanidine Hydrobromide is commonly used in perovskite solar cell research, particularly in academic institutions and research organizations. It is integral to surface modification processes that enhance the performance of solar cells. Its availability and consistent quality make it a preferred material for scientists working on renewable energy solutions. The compound's versatility and reliability support ongoing advancements in material science and photovoltaic technology.

Laboratory Applications

  • Perovskite Solar Cell Synthesis: Guanidine Hydrobromide is ideal for synthesizing perovskite materials due to its ability to provide bromide ions, which are essential for forming stable and efficient perovskite structures.
  • Surface Modification of Photovoltaic Materials: This compound is used to modify the surface of perovskite materials, enhancing their performance by improving charge transport and reducing recombination losses.
  • Ion Source in Thin Film Deposition: It serves as a reliable source of bromide ions in thin film deposition techniques, enabling precise control over the composition and structure of perovskite layers.
  • Material Characterization Studies: Its chemical stability and solubility make it suitable for use in various characterization techniques, allowing researchers to study the properties of perovskite materials under controlled conditions.
  • Research in Renewable Energy Technologies: Guanidine Hydrobromide supports research into next-generation solar cells, contributing to the development of sustainable and efficient energy solutions.

Specifications

  • Brand: TCI
  • CAS Number: 19244-98-5
  • Category: Materials Science > Electronic Materials > Perovskite Solar Cell (PSC) Materials
  • Pack Sizes: Available in various quantities as per standard laboratory supply
  • Physical Form: Solid
  • Storage Note: Store in a cool, dry place away from moisture and direct sunlight

Handling and Storage

Guanidine Hydrobromide should be stored in a cool, dry environment to maintain its chemical stability and prevent degradation. It is recommended to keep the material in a sealed container to avoid exposure to moisture, which can affect its solubility and reactivity. Due to its solid form, it is best stored in airtight containers made of materials that are chemically inert, such as glass or high-density polyethylene. In laboratory settings, it should be handled with appropriate personal protective equipment, including gloves and safety goggles, to ensure safe handling. While it is not classified as a hazardous material under standard conditions, it is important to follow general laboratory safety protocols when working with any chemical compound. Proper storage and handling practices help maintain the integrity of the material and ensure safe usage in research applications.

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