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Tris(3,5-dimethylphenyl)phosphine_Molecular_structure_CAS_69227-47-0)
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Tris(3,5-dimethylphenyl)phosphine

Catalog No. 698253 Name Sigma Aldrich
CAS Number 69227-47-0 Website http://www.sigmaaldrich.com
M. F. C24H27P Telephone 1-800-521-8956
M. W. 346.444941 Fax
Purity 96% Email
Storage Chembase ID: 141692

SYNONYMS

Title
三(3,5-二甲苯基)膦
IUPAC name
tris(3,5-dimethylphenyl)phosphane
IUPAC Traditional name
tris(3,5-dimethylphenyl)phosphane
Synonyms
Tri-3,5-xylylphosphine

DATABASE IDS

CAS Number 69227-47-0
MDL Number MFCD03094579

PROPERTIES

Linear Formula [(CH3)2C6H3]3P
Purity 96%
Melting Point 160-165 °C
GHS Pictograms GHS07
GHS Signal Word Warning
GHS Hazard statements H302
European Hazard Symbols Harmful Harmful (Xn)
MSDS Link Download
Personal Protective Equipment dust mask type N95 (US), Eyeshields, Gloves
Risk Statements 22
German water hazard class 3

DETAILS

Description (English)
Packaging
1 g in glass bottle
Application
Catalyst for:
• Cu / diphosphine-catalyzed asymmetric hydrogenation of heteroaromatic ketones and enones1
• Highly selective rhodium-catalyzed hydrogenation reactions2
• Classical versus kinetic resolution in preparation of privileged silicon-stereogenic silanaphthalenes3Used for kinetic resolution of donor-functionalized secondary alcohols via Cu-H-catalyzed stereoselective silylation by dehydrogenative Si-O coupling with Si-stereogenic silanes4Used for comparative studies of conformational rigidity of silicon-stereogenic silanes in asymmetric catalysis5
Description (简体中文)
包装
1 g in glass bottle
Application
Catalyst for:
• Cu / diphosphine-catalyzed asymmetric hydrogenation of heteroaromatic ketones and enones1
• Highly selective rhodium-catalyzed hydrogenation reactions2
• Classical versus kinetic resolution in preparation of privileged silicon-stereogenic silanaphthalenes3Used for kinetic resolution of donor-functionalized secondary alcohols via Cu-H-catalyzed stereoselective silylation by dehydrogenative Si-O coupling with Si-stereogenic silanes4Used for comparative studies of conformational rigidity of silicon-stereogenic silanes in asymmetric catalysis5

REFERENCES