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Catalog Number:
40805
CAS Number:
1384974-38-2
RuCl[( R )-daipena][( R )-xilbinap]
Purity:
~ 8% (contenido de Ru)
Synonym(s):
( R )-RUCY(regR)-XylBINAP
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Información del producto

RuCl[(R)-daipena][(R)-xylbinap] is a specialized organometallic compound that serves as a highly effective catalyst in various organic synthesis processes. This compound is particularly valued in asymmetric synthesis, where it facilitates the production of chiral molecules, which are essential in the pharmaceutical and agrochemical industries. Its unique structure allows for enhanced selectivity and efficiency in reactions, making it an ideal choice for researchers and professionals looking to optimize their synthetic pathways.

The compound's ability to catalyze reactions with high enantioselectivity opens up new avenues in drug development, particularly in the creation of complex molecules that require precise stereochemistry. Additionally, its stability and reactivity profile make it suitable for use in both academic research and industrial applications, where consistent performance is crucial. With RuCl[(R)-daipena][(R)-xylbinap], users can expect improved yields and reduced reaction times, ultimately leading to more efficient processes and innovative product development.

Número CAS
1384974-38-2
Fórmula molecular
C71H73ClN2O2P2Ru
Peso molecular
1184.84
Número MDL
MFCD20261161
Condiciones
Tienda en RT
Información general
Número CAS
1384974-38-2
Fórmula molecular
C71H73ClN2O2P2Ru
Peso molecular
1184.84
Número MDL
MFCD20261161
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

RuCl[(R)-daipena][(R)-xylbinap] is widely utilized in research focused on:

  • Catalysis: This compound serves as a highly effective catalyst in various organic reactions, particularly in asymmetric synthesis, allowing for the production of chiral molecules with high enantiomeric purity.
  • Pharmaceutical Development: Researchers leverage its catalytic properties to develop new pharmaceuticals, enhancing the efficiency of drug synthesis and reducing the number of steps required in the production process.
  • Material Science: Its unique properties make it valuable in the development of advanced materials, such as polymers and nanomaterials, which can be tailored for specific applications in electronics and coatings.
  • Green Chemistry: The compound supports environmentally friendly practices by enabling reactions that minimize waste and energy consumption, aligning with the principles of sustainable chemistry.
  • Academic Research: It is frequently used in academic settings for teaching and experimental purposes, providing students and researchers with hands-on experience in modern synthetic techniques and catalysis.

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