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Catalog Number:
41056
CAS Number:
111795-43-8
( R )-3,3'-Dibromo-1,1'-bi-2-naftol
Purity:
≥ 98% (pureza quiral)
Synonym(s):
( R )-3,3'-Dibromo-2,2'-dihidroxi-1,1'-binaftilo
Documents
$380.57 /1G
Tamaño
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Información del producto

(R)-3,3'-Dibromo-1,1'-bi-2-naphthol is a specialized compound known for its unique properties and applications in various fields, particularly in organic synthesis and materials science. This compound features two bromine atoms and hydroxyl groups that enhance its reactivity, making it an excellent candidate for use in asymmetric synthesis and catalysis. Its chirality allows for the production of enantiomerically pure compounds, which is crucial in pharmaceutical applications where the efficacy of drugs can depend on their stereochemistry.

In addition to its role in synthesis, (R)-3,3'-Dibromo-1,1'-bi-2-naphthol is also utilized in the development of advanced materials, such as organic light-emitting diodes (OLEDs) and liquid crystal displays (LCDs). Its ability to act as a ligand in coordination chemistry further expands its utility in creating novel compounds with tailored properties. Researchers and industry professionals can leverage this compound for innovative applications, making it a valuable addition to any chemical inventory.

Número CAS
111795-43-8
Fórmula molecular
C20H12Br2O2
Peso molecular
444.12
Número MDL
MFCD03093629
Punto de fusión
256 - 260 °C
Rotación óptica
[α] 20 D = 90 ± 2 ° (C = 1 en MeOH)
Condiciones
Tienda en RT
Información general
Número CAS
111795-43-8
Fórmula molecular
C20H12Br2O2
Peso molecular
444.12
Número MDL
MFCD03093629
Punto de fusión
256 - 260 °C
Rotación óptica
[α] 20 D = 90 ± 2 ° (C = 1 en MeOH)
Condiciones
Tienda en RT
Propiedades
¡Pronto habrá más información sobre la propiedad!
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Seguridad y normativas
Materiales peligrosos
-
Antibiótico
-
Regulado por la DEA
No
Advertencias
-
Aplicaciones

(R)-3,3'-Dibromo-1,1'-bi-2-naphthol is widely utilized in research focused on:

  • Organic Synthesis: This compound serves as a versatile building block in organic chemistry, allowing researchers to create complex molecules with specific properties, enhancing the efficiency of synthetic pathways.
  • Chiral Catalysis: Its unique chiral structure makes it an excellent catalyst in asymmetric synthesis, helping to produce enantiomerically pure compounds, which is crucial in pharmaceuticals.
  • Material Science: Used in the development of advanced materials, it contributes to the creation of polymers and coatings with improved thermal and mechanical properties, benefiting industries like electronics and automotive.
  • Biological Research: This compound is explored for its potential applications in medicinal chemistry, particularly in the design of new drugs targeting specific biological pathways, offering innovative solutions for health challenges.
  • Environmental Chemistry: It plays a role in the study of environmental pollutants, aiding researchers in understanding the behavior of brominated compounds in ecosystems and developing strategies for remediation.

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