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Halides, alkyl, preparation from

Note that in the S l reaction, which is often carried out under acidic conditions, neutral water can act as a leaving group. This occurs, for example, when an alkyl halide is prepared from a tertiary alcohol by reaction with HBr or HC1 (Section 10.6). The alcohol is first protonated and then spontaneously loses H2O to generate a carbocation, which reacts with halide ion to give the alkyl halide (Figure 11.13). Knowing that an SN1 reaction is involved in the conversion of alcohols to alkyl halides explains why the reaction works well only for tertiary alcohols. Tertiary alcohols react fastest because they give the most stable carbocation intermediates. [Pg.378]

The alkyl halides are prepared from the corresponding alcohols. [Pg.221]

Alkyl halides are prepared from alcohols by use of hydrogen halides or phosphorus halides. Phosphorus halides are often preferred because they tend less to bring about rearrangement (Sec. 16.4). [Pg.533]

Reactions that probe these disconnections are presented in the homework problems. The disconnection diagrams should be read as follows. Alkyl halides are prepared from alkenes, with regioselectivity. Similarly, alcohols are prepared from alkenes with regioselectivity. A chemical reaction involves treatment of an alkene with an acid HX to give the alkyl halide. Another chemical reaction is treatment of an alkene with aqueous acid to give the more substituted alcohol, or with borane and then basic hydrogen peroxide to give the less substituted alcohol. [Pg.475]

Anilides and a-Naphthalides. The Grignard reagents prepared from alkyl halides react with phenyl isocyanate (CgHjN=C=0) or with a-uaphthy l isocyanate (C,oH, N=C=0) to yield addition products that are converted by hydrolysis into anihdes and a-naphthalides respectively RX + Mg —> RMgX... [Pg.290]

Alkyl mercuric halides. Grignard reagents, prepared from alkyl halides, react with a mercuric halide that contains the same halogen as the reagent to form alkyl mercuric halides ... [Pg.291]

Aliphatic nitro compounds. These are isomeric with the alkyl nitrites and may be prepared from the alkyl halide and silver nitrite, for example C,H,aBr + AgNOj — C Hj NO + AgBr... [Pg.302]

In eontrast, dialkylhalonium salts sueh as dimethylbromonium and dimethyliodonium fluoroantimonate, whieh we prepared from excess alkyl halides with antimony pentafluoride or fluoroantimonie acid and isolated as stable salts (the less-stable chloronium salts were obtained only in solution), are very effective alkylating agents for heteroatom eompounds (Nu = R2O, R2S, R3N, R3P, ete.) and for C-alkylation (arenes, alkenes). [Pg.104]

We now have a new problem Where does the necessary alkene come from Alkenes are prepared from alcohols by acid catalyzed dehydration (Section 5 9) or from alkyl halides by dehydrohalogenation (Section 5 14) Because our designated starting material is tert butyl alcohol we can combine its dehydration with bromohydrm formation to give the correct sequence of steps... [Pg.266]

Section 8 14 Nucleophilic substitution can occur with leaving groups other than halide Alkyl p toluenesulfonates (tosylates) which are prepared from alcohols by reaction with p toulenesulfonyl chloride are often used... [Pg.357]

A reaction useful only with sub strates that do not undergo E2 elimi nation readily It is rarely used for the synthesis of alcohols since alkyl halides are normally prepared from alcohols... [Pg.626]

Both reactants m the Williamson ether synthesis usually originate m alcohol pre cursors Sodium and potassium alkoxides are prepared by reaction of an alcohol with the appropriate metal and alkyl halides are most commonly made from alcohols by reaction with a hydrogen halide (Section 4 7) thionyl chloride (Section 4 13) or phosphorus tri bromide (Section 4 13) Alternatively alkyl p toluenesulfonates may be used m place of alkyl halides alkyl p toluenesulfonates are also prepared from alcohols as their imme diate precursors (Section 8 14)... [Pg.673]

Phosphorus ylides are prepared from alkyl halides by a two step sequence The first step is a nucleophilic substitution of the 8 2 type by triphenylphosphme on an alkyl halide to give an alkyltriphenylphosphonium salt... [Pg.733]

Section 19 12 Nitnles which can be prepared from primary and secondary alkyl halides by nucleophilic substitution with cyanide ion can be converted to car boxyhc acids by hydrolysis... [Pg.822]

As indicated by the title, these processes are largely due to the work of Ziegler and coworkers. The type of polymerisation involved is sometimes referred to as co-ordination polymerisation since the mechanism involves a catalyst-monomer co-ordination complex or some other directing force that controls the way in which the monomer approaches the growing chain. The co-ordination catalysts are generally formed by the interaction of the alkyls of Groups I-III metals with halides and other derivatives of transition metals in Groups IV-VIII of the Periodic Table. In a typical process the catalyst is prepared from titanium tetrachloride and aluminium triethyl or some related material. [Pg.209]


See other pages where Halides, alkyl, preparation from is mentioned: [Pg.428]    [Pg.467]    [Pg.506]    [Pg.473]    [Pg.404]    [Pg.91]    [Pg.9]    [Pg.272]    [Pg.200]    [Pg.216]    [Pg.329]    [Pg.389]    [Pg.339]    [Pg.115]    [Pg.43]    [Pg.159]    [Pg.246]   


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Alkenes preparation from alkyl halides

Alkyl halides nitrile preparation from

Alkyl halides preparation

Alkyl halides preparation from alcohols

Alkyl halides preparing phosphonium salts from

Alkyl preparation

Alkylated preparation

From alkyl halides

Halides preparation

Halides, alkyl, preparation from amines

Halides, alkyl, preparation from sulfonate esters

Other Ways to Prepare Alkyl Halides from Alcohols

Preparation azides from alkyl halides

Preparation esters from alkyl halides

Preparing Alkyl Halides from Alcohols

Preparing Alkyl Halides from Alkanes Radical Halogenation

Preparing Alkyl Halides from Alkenes Allylic Bromination

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