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TCI

CAS 159-66-0

9,9'-Spirobi[9H-fluorene] TCI S0800

9,9'-Spirobi[9H-fluorene] TCI S0800

Chemical Identity

CAS No.
159-66-0
PubChem
CID 135975·SID 87560580
Formula
C25H16
Molecular weight
316.4 g/mol
Purity
>98.0%(HPLC)
Full identifiers (IUPAC, SMILES, InChIKey)
IUPAC
9,9'-spirobi[fluorene]
SMILES
C1=CC=C2C(=C1)C3=CC=CC=C3C24C5=CC=CC=C5C6=CC=CC=C46
InChIKey
SNFCXVRWFNAHQX-UHFFFAOYSA-N
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9,9'-Spirobi[9H-fluorene] is an organic compound with a complex molecular structure that plays a significant role in scientific research related to semiconductor materials. This compound is widely used in the development of new materials, particularly in the fields of material science and technology. As a fundamental building block in semiconductor material construction, it contributes to the formation of molecular structures with unique optical and electronic properties. Its complex molecular structure and high chemical stability make it a preferred choice for research requiring precision and consistency.

The compound’s unique molecular architecture and chemical stability ensure reliable performance in various laboratory conditions. These properties allow it to maintain its integrity in both dry and controlled environments, making it suitable for high-quality research applications. Its chemical resistance and structural stability also support its use in experiments where consistency and reproducibility are essential. This makes it an ideal material for advanced research in material science and related disciplines.

In Indonesian laboratories, 9,9'-Spirobi[9H-fluorene] is commonly used in research focused on material technology and energy applications. Scientists and researchers in educational and research institutions across Indonesia frequently utilize this compound for experiments involving semiconductor material development and optical property studies. Its reliability and performance make it a valuable component in the pursuit of scientific innovation in the region.

TCI brochures (PDF)

  • Semiconductor material development due to its unique optical and electronic properties that enable the creation of advanced materials.
  • Organic electronics research as it serves as a building block for molecular structures used in electronic devices.
  • Thin film fabrication processes where its chemical stability ensures consistent results in material synthesis.
  • Optical material testing because of its ability to maintain structural integrity under various experimental conditions.
  • Energy storage material research due to its role in constructing materials with high electrical conductivity and stability.

Brand TCI
CAS number 159-66-0
Molecular formula —
Purity —
Category Materials Science > Material Building Blocks > Small Molecule Semiconductor Building Blocks
Pack sizes Available in standard laboratory quantities as per supplier specifications
Physical form Solid
Storage Store in a cool, dry place away from direct sunlight and moisture

This compound should be stored in a cool, dry environment to maintain its chemical stability and prevent degradation. It is recommended to use airtight containers to protect it from moisture and air exposure. Since it is a solid, it should be handled with care to avoid physical damage. Laboratory personnel should ensure proper ventilation when working with the material to minimize inhalation risks. Storage should be away from incompatible substances to prevent any chemical interactions. Regular inspection of storage conditions is advised to ensure the material remains in optimal condition for research use.

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