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Bromides 4- magnesium

Me2NCH2) C2H5)(Me)C-OOC Ph-HCI. Colourless crystalline powder with a bitter taste, m.p. 177-179"C. Prepared by the action of ethyl magnesium bromide on dimethyl-aminoaceione. It is a local anaesthetic, mainly used to produce spinal anaesthesia. [Pg.33]

The lower members in Group II form essentially ionic halides, with magnesium having intermediate properties, and both magnesium bromide and iodide dissolve in organic solvents. [Pg.128]

Triphenyl-carbinol, (C6H5)3COHy from Ethyl Benzoate and Phenyl Magnesium Bromide. (Grignard Reaction 6 (a).)... [Pg.284]

Solid magnesium must be absent to avoid the formation of diallyl via allyl magnesium bromide the insertion of a short plug of glass wool effectively removes any finely divided magnesium. [Pg.240]

C4H, MgBr + HCOOCaHs (C H.ajaCHOMgBr + CjHjOMgBr n-Butyl magnesium bromide Ethyl formate... [Pg.248]

Dimethyl n-propyl carbinol, CH3(CH2)2COH(CH3)2. From n-propyl magnesium bromide and acetone. Collect the tertiary alcohol at 121-124°. [Pg.258]

Anilides or p-toluidides of acids from esters. Esters are converted into the corresponding anilides or p-toluidides by treatment with anilino- or with p-toluidino-magnesium bromide, which are readily obtained from any simple Grignard reagent and aniline or p-toluidine ... [Pg.394]

Add 4 0 g. (4 0 ml.) of pure anihne dropwise to a cold solution of ethyl magnesium bromide (or iodide) prepared from 1 Og. of magnesium, 5 0 g. (3-5 ml.) of ethyl bromide (or the equivalent quantity of ethyl iodide), and 30 ml. of pure, sodium-dried ether. When the vigorous evolution of ethane has ceased, introduce 0 02 mol of the ester in 10 ml. of anhydrous ether, and warm the mixture on a water bath for 10 minutes cool. Add dilute hydrochloric acid to dissolve the magnesium compounds and excess of aniline. Separate the ethereal layer, dry it with anhydrous magnesium sulphate and evaporate the ether. Recrystallise the residual anihde, which is obtained in almost quantitative yield, from dilute alcohol or other suitable solvent. [Pg.394]

C,H,MgBr + C.H COOCjH, — (CeHj)3COMgBr + MgBrOCjHj Plienyl magnesium bromide Ethyl benzoate... [Pg.811]

To a mixture of 0.10 mol of 1-ethoxy-l,2-heptadiene (see this chapter, Exp. 13) and 120 ml of diethyl ether was added 1 g of copper(I) bromide. A solution of butyl magnesium bromide in about 200 ml of diethyl ether, prepared from 0.25 mol of butyl bromide (see Chapter II, Exp. 5) was added in 15 min. The reaction was weakly exothermic and the temperature rose slowly to about 32°C. The mixture was held for an additional 40 min at that temperature, then the black reaction mixture was... [Pg.186]

Phenylthiazolo[2.3-e]tetrazole treated with equimolecular amounts of phenyl magnesium bromide gives phenyl(4-phenyl-2-thiazoiyl)triazene (334) (Scheme 191) (620). [Pg.113]

It should be noted that Grignard reagents obtained from 2-methylthiazole do not yield acetyl derivatives (31). Ketones can also be obtained from cyanothiazoles and Grignard reagents (87). Thus phenyl magnesium bromide and 5-cyanothiazole give phenyl 5-thiazolyl ketone (Scheme 35). [Pg.536]

Write the equation for the reaction of 1 hexyne with ethyl magnesium bromide as if it involved ethyl anion (CH3CH2 ) instead of CH3CH2MgBr and use curved arrows to represent the flow of electrons j... [Pg.598]

Butynediol. Butynediol, 2-butyne-l,4-diol, [110-65-6] was first synthesized in 1906 by reaction of acetylene bis(magnesium bromide) with paraformaldehyde (43). It is available commercially as a crystalline soHd or a 35% aqueous solution manufactured by ethynylation of formaldehyde. Physical properties are Hsted in Table 2. [Pg.105]

AHylestrenol (37) is prepared from (32), an intermediate in the synthesis of norethindrone. Treatment of (32) with ethanedithiol and catalytic boron trifluoride provides a thioketal. Reduction with sodium in Hquid ammonia results in the desired reductive elimination of the thioketal along with reduction of the 17-keto group. Oxidation of this alcohol with chromic acid in acetone followed by addition of aHyl magnesium bromide, completes the synthesis... [Pg.212]


See other pages where Bromides 4- magnesium is mentioned: [Pg.372]    [Pg.284]    [Pg.240]    [Pg.240]    [Pg.247]    [Pg.247]    [Pg.247]    [Pg.248]    [Pg.248]    [Pg.256]    [Pg.318]    [Pg.785]    [Pg.813]    [Pg.165]    [Pg.167]    [Pg.326]    [Pg.573]    [Pg.595]    [Pg.488]    [Pg.130]    [Pg.356]    [Pg.585]    [Pg.585]    [Pg.585]    [Pg.585]    [Pg.585]    [Pg.585]    [Pg.101]    [Pg.327]   
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