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Alkenes, synthesis from amines

Hofmann elimination Alkene synthesis from quaternary ammonium salts, used to determine the structure of amines. [Pg.258]

Sulfonylhydroxylamines and hydroxylamine O-sulfonic acid have found wide apph-cation in synthesis of amines from achiral or chiral organoboranes and boronate esters and the hydroboration-amination methodology is successfully used for direct amination of alkenes. 0-Sulfonyloximes were also found to be good reagents for synthesis of amines from organomagnesium, -copper and -zinc reagents. [Pg.338]

From an economical and environmental point of view, one pot synthesis of amines from alkenes is a superior pathway over conventional multistep pathways. Hydroaminomethylation is an attractive tool for the synthesis of amines and has been used in the pharmaceutical and chanical industries. Blum developed a heterogeneous system based on [Rh(cod)Cl]2 immobilized within a sol-gel matrix as a highly efficient, regioselective, and recyclable catalyst for hydroaminomethylation reaction of vinylarenes with aniline derivatives (anilines or nitrobenzenes) under mild conditions. [Pg.101]

The Hofmann elimination is useful synthetically for preparing alkenes since it gives the least substituted alkene. The reaction involves thermal elimination of a tertiary amine from a quaternary ammonium hydroxide these are often formed by alkylation of a primary amine with methyl iodide followed by reaction with silver oxide. The mechanism of the elimination is shown in Scheme 1.13 in this synthesis of 1-methyl-1-... [Pg.27]

The addition of Grignard reagents to aldehydes, ketones, and esters is the basis for the synthesis of a wide variety of alcohols, and several examples are given in Scheme 7.3. Primary alcohols can be made from formaldehyde (Entry 1) or, with addition of two carbons, from ethylene oxide (Entry 2). Secondary alcohols are obtained from aldehydes (Entries 3 to 6) or formate esters (Entry 7). Tertiary alcohols can be made from esters (Entries 8 and 9) or ketones (Entry 10). Lactones give diols (Entry 11). Aldehydes can be prepared from trialkyl orthoformate esters (Entries 12 and 13). Ketones can be made from nitriles (Entries 14 and 15), pyridine-2-thiol esters (Entry 16), N-methoxy-A-methyl carboxamides (Entries 17 and 18), or anhydrides (Entry 19). Carboxylic acids are available by reaction with C02 (Entries 20 to 22). Amines can be prepared from imines (Entry 23). Two-step procedures that involve formation and dehydration of alcohols provide routes to certain alkenes (Entries 24 and 25). [Pg.638]

With a common intermediate from the Medicinal Chemistry synthesis now in hand in enantiomerically upgraded form, optimization of the conversion to the amine was addressed, with particular emphasis on safety evaluation of the azide displacement step (Scheme 9.7). Hence, alcohol 6 was reacted with methanesul-fonyl chloride in the presence of triethylamine to afford a 95% yield of the desired mesylate as an oil. Displacement of the mesylate using sodium azide in DMF afforded azide 7 in around 85% assay yield. However, a major by-product of the reaction was found to be alkene 17, formed from an elimination pathway with concomitant formation of the hazardous hydrazoic acid. To evaluate this potential safety hazard for process scale-up, online FTIR was used to monitor the presence of hydrazoic acid in the head-space, confirming that this was indeed formed during the reaction [7]. It was also observed that the amount of hydrazoic acid in the headspace could be completely suppressed by the addition of an organic base such as diisopropylethylamine to the reaction, with the use of inorganic bases such as... [Pg.247]


See other pages where Alkenes, synthesis from amines is mentioned: [Pg.584]    [Pg.584]    [Pg.42]    [Pg.111]    [Pg.28]    [Pg.394]    [Pg.91]    [Pg.183]    [Pg.411]    [Pg.38]    [Pg.38]    [Pg.433]    [Pg.377]    [Pg.278]    [Pg.882]    [Pg.156]    [Pg.199]    [Pg.213]    [Pg.216]    [Pg.1135]    [Pg.305]    [Pg.305]    [Pg.159]    [Pg.242]    [Pg.46]    [Pg.95]    [Pg.323]    [Pg.1284]    [Pg.1512]    [Pg.42]    [Pg.21]    [Pg.140]    [Pg.221]    [Pg.203]   
See also in sourсe #XX -- [ Pg.5 , Pg.11 ]




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Alkene amines, from alkenes

Alkenes amination

Alkenes synthesis from

Amine alkenes

Amines from alkenes

Amines synthesis

Amines synthesis from

From alkenes

From aminals

From amines

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