CAS NO.184095-69-0 (R)-(-)-1-[(S)-2-Diphenylphosphino)ferrocenyl]ethylbis(3,5-dimethylphenyl)phosphine

CAS NO.184095-69-0 (R)-(-)-1-[(S)-2-Diphenylphosphino)ferrocenyl]ethylbis(3,5-dimethylphenyl)phosphine

Organophosphorus Compounds Diphosphines, sometimes called bisphosphanes, are organophosphorus compounds used as ligands in inorganic and organometallic chemistry. They are identified by the presence of two phosphino groups linked by a backbone, and are usually chelating. Introduction of...
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Product Details

CAS NO.184095-69-0 (R)-(-)-1-[(S)-2-Diphenylphosphino)ferrocenyl]ethylbis(3,5-dimethylphenyl)phosphine Basic information

Product   Name

(R)-(-)-1-[(S)-2-Diphenylphosphino)ferrocenyl]ethylbis(3,5-dimethylphenyl)phosphine  

 

Synonyms

JOSIPHOS   SL-J005-1;(R,R)-1-[1-[BIS(3,5-DIMETHYLPHENYL)PHOSPHINO]ETHYL]-2-(DIPHENYLPHOSPHINO)FERROCENE;(R)-(-)-1-((S)-2-(DIPHENYLPHOSPHINO)FERROCENYL)ETHYLBIS(3,5-DIMETHYLPHENYL)PHOSPHINE

Structure  

184095-69-0.gif          

CAS  NO

184095-69-0

Appearance

Orange  powder

Assay

98%

MF:

C40H40FeP2  10*

MW

638.54

Product   Categories

Organophosphine ligand;Chiral Phosphine;Ferrocene Series;Josiphos Series

Storage  

Shading,   sealed, dry place.

Capacity

10000KG /month

Package  

In   paper drums /Fluoride drums /iron drums /plastic drums/IBC Tank ,etc.

Shipment method  

By   Sea ,Air ,Courier door to door ,etc.

Loading   Port

China   any port ,Beijing ,Shanghai ,Hong Kong etc.

 

Organophosphorus Compounds

Diphosphines, sometimes called bisphosphanes, are organophosphorus compounds used as ligands in inorganic and organometallic chemistry. They are identified by the presence of two phosphino groups linked by a backbone, and are usually chelating.

 

Introduction of CAS NO.184095-69-0 (R)-(-)-1-[(S)-2-Diphenylphosphino)ferrocenyl]ethylbis(3,5-dimethylphenyl)phosphine 

The development of efficient chiral phosphorus ligands has played an important role in the development of asymmetric hydrogenation. Today, thousands of efficient chiral phosphorus

ligands with diverse structures have been developed, and their applications in asymmetric hydrogenation have been extensively utilized in both academic research and industry. The development of many efficient chiral phosphorus ligands also allows the discovery of new mechanistic information of Rh- or Ru-catalyzed asymmetric hydrogenation. The catalysts

are not restricted on those with Rh or Ru metals; complexes of other transition metals such as

Ir, Pt, Ti, Zr, and Pd are also effective. Numerous unsaturated compounds can be hydrogenated in

excellent ee’s using a metal catalyst associated with an appropriate chiral ligand.

 

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