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| COPPER(II) TRIFLUOROMETHANESULFONATE Basic information | Reaction |
| COPPER(II) TRIFLUOROMETHANESULFONATE Chemical Properties |
Melting point | ≥300 °C | storage temp. | Inert atmosphere,Room Temperature | solubility | Water (Slightly) | form | Powder | color | White to slightly blue or light gray | Water Solubility | Soluble in water. | Sensitive | Hygroscopic | Hydrolytic Sensitivity | 6: forms irreversible hydrate | BRN | 4028198 | Exposure limits | ACGIH: TWA 1 mg/m3 NIOSH: IDLH 100 mg/m3; TWA 1 mg/m3 | Stability: | hygroscopic | InChIKey | SBTSVTLGWRLWOD-UHFFFAOYSA-L | CAS DataBase Reference | 34946-82-2(CAS DataBase Reference) |
Hazard Codes | C,Xi | Risk Statements | 34 | Safety Statements | 26-36/37/39-45-27 | RIDADR | UN 3261 8/PG 2 | WGK Germany | 3 | F | 3-10 | Hazard Note | Irritant/Hygroscopic | TSCA | No | HazardClass | 8 | PackingGroup | III | HS Code | 29049085 |
| COPPER(II) TRIFLUOROMETHANESULFONATE Usage And Synthesis |
Reaction |
- Ring-Opening of epoxides and aziridines.
- Asymmetric conjugate addition of organozinc reagents to α,β-unsaturated ketones.
- Electrophilic addition of olefins.
- Asymmetric aziridination of olefins.
- Asymmetric cycloadditions and aldol condensations.
- Asymmetric Kharasch oxidation.
- Asymmetric Michael addition of enamides.
- Asymmetric O-H or O-R insertion reactions.
- Enantioselective intramolecular aminooxygenation of alkenes.
- Enantioselective addition of dialkylzinc reagents to N-acylpyridinium salts.
- Pd-catalyzed C-H functionalizations of oximes with arylboronic acids.
- Used as a Lewis acid in the Nazarov cyclization.
- Catalyst in the diacetoxylation olefins.
- Catalyst in the meta-selective direct arylation of α-aryl carbonyl compounds.
- Catalyst in the three-component coupling of amines, aldehydes, and alkynes.
| Chemical Properties | white to slightly blue or light grey cryst. powder | Uses | Copper(II) trifluoromethanesulfonate is a mild lewis acid. It is used as catalyst which promotes dehydration of alcohols and diols to alkenes at ambient temperatures. It is widely used to generate carbenoid species from ?-diazo esters and ketones, via in situ reduction to the Cu(I) species. It is also promotes the reaction between diazo esters and imines to give aziridines. It catalyzes syn-selective aldol condensation of (Z)-silyl enol ethers with aldehydes, Friedel-Crafts alkylation, acylation reactions of aromatics and addition of trimethylsilyl cyanide to carbonyl compounds. | Purification Methods | Dissolve it in MeCN, add dry Et2O until cloudy and cool at -20o in a freezer. The light blue precipitate is collected and dried in a vacuum oven at 130o/20mm for 8hours. It has 737nm ( 22.4 max M1cm -1) in AcOH. [Salomon & Kochi J Am Chem Soc 95 330 1973]. It has also been dried in a vessel at 0.1Torr by heating with a Fischer burner [Andrist et al. J Org Chem 43 3422 1978]. It has been dried at 110-120o/5mm for 1hour before use and forms a *benzene complex which should be handled in a dry box because it is air sensitive [Kobayashi et al. Chem Pharm Bull Jpn 28 262 1980, Salomon & Kochi J Am Chem Soc 95 330 1973]. [Beilstein 3 IV 34.] |
| COPPER(II) TRIFLUOROMETHANESULFONATE Preparation Products And Raw materials |
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