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Ethers Reactivity Chart

Ethers are among the most used protective groups in organic synthesis. They vary from the simplest, most robust, methyl ether to the more elaborate, substituted, trityl ethers developed for use in nucleotide synthesis. They are formed and removed under a wide variety of conditions. Some of the ethers that have been used to protect alcohols are included in Reactivity Chart 1. ... [Pg.14]

Reactivity Chart 1. Protection for the Hydroxyl Group Ethers... [Pg.413]

Hydroxyl group, protection of, 10-142 as esters, 87-118 Reactivity Chart 2, 417-420 as ethers, 14-87 ... [Pg.238]

Phenacyl ethers, to protect phenols, 153 Phenacylsulfonamides, to prote ct amines, 385 Phenols, protection of, 143-170 as esters, 162-170 as ethers, 145-162 Reactivity Chart 4, 425-428 Phenothiazinyl-(10)-carbonyl derivatives, to protect amines, 346... [Pg.240]

Reactivity Chart 11. Selective Deproteetion of Silyl Ethers... [Pg.1033]

Specific complexation of cations by polyethylene oxide chains (PEGs 1), macrocyclic (crown ethers 2-4) or macrobicyclic (cryptands 5) polyethers facilitates salt dissolution in low-polarity solvents, at the same time providing nonsolvated highly reactive anions by increasing ion-pair dissociation (Chart 1) [37],... [Pg.223]


See other pages where Ethers Reactivity Chart is mentioned: [Pg.4]    [Pg.4]    [Pg.23]    [Pg.248]    [Pg.9]    [Pg.4]    [Pg.24]    [Pg.186]    [Pg.218]    [Pg.29]    [Pg.331]    [Pg.20]    [Pg.111]    [Pg.274]    [Pg.232]   
See also in sourсe #XX -- [ Pg.4 , Pg.413 , Pg.414 , Pg.415 , Pg.425 , Pg.426 , Pg.427 ]

See also in sourсe #XX -- [ Pg.4 , Pg.708 , Pg.709 , Pg.710 , Pg.720 , Pg.721 , Pg.722 ]

See also in sourсe #XX -- [ Pg.4 , Pg.413 , Pg.414 , Pg.415 , Pg.425 , Pg.426 , Pg.427 ]




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Ethers reactivity

Reactivity charts

Reactivity charts as ethers

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