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Guests chiral recognition

This chapter provides (i) a brief review of the chemistry involved in chiral host-chiral guest recognition involving primary amines (ii) a description of a nonchromatographic (equilibrium or bind-release based) separation process devel-... [Pg.204]

Davis, A. P. Chiral guest recognition , in Encyclopedia of Supramolecular Chemistry, Atwood, J. L. and Steed... [Pg.185]

Chiral guest recognition is a success story in supramo-lecular chemistry, with many examples of good selectivity and some that are impressive. However, there is plenty of room for improvement. By their nature, the most effective receptors are complementary to specific substrates and, therefore, tend to be limited in scope. Also, some substrate classes have proved far more resistant than others. The goal of binding awide range of substrates with. say. >95% e.e.. is still unrealized. Success will probably require an... [Pg.242]

The scope of the area is so wide that all we can attempt to do here is discuss key examples and encourage the interested reader to investigate the other interesting results eited therein. We concentrate strictly on supramolecular effects in chiral induction. There is a separate article in this Encyclopedia that deals with the related field of chiral guest recognition. [Pg.245]

Cation-n Interactions, p. 21A Channel Inclusion Compounds, p. 223 Chiral Guest Recognition, p. 236 Crystal Growth Mechanisms, p. 364 Fluorescent Sensors, p. 572 Hydrogen Bonding, p. 658 Hydrophobic Effect, p. 673 Luminescent Materials, p. S16 Nonlinear Optical Materials, p. 973... [Pg.503]

Carbohydrates, Recognition of, p. 169 Carbonic Anhydrase Models, p. 178 Carcerands and Hernicarcerands. p. 189 Cation-n Interactions, p. 214 Cavitands, p. 219 Chiral Guest Recognition, p. 236 Classical Descriptions of Inclusion Compounds, p. 253 Classification and Nomenclature of Supramolecular Compounds, p. 261 Clathrate Hydrates, p. 274 Conzplexation of Fullerenes, p. 302 Concepts in Ciystal Engineering, p. 319 Crown Ethers, p. 326 Cryptands, p. 334 Cryptophanes, p. 340 Cyclodextrins, p. 398... [Pg.677]

Catenanes and Other Interlocked Molecules, p. 206 Chiral Guest Recognition, p. 236... [Pg.842]

Biological Ligands, p. 88 Chiral Guest Recognition, p. 236 Complexation of Fullerenes, p. 302 Concave Reagents, p. 5 i 1 Cyclophanes Definition aiTd Scope, p. 414 Drug Delivery, p. 484 Glycoluril-Based Hosts, p. 597 Podands, p. 1106... [Pg.891]

Amide- and Urea-Based Anion Receptors, p. 51 Amino Acids Applications, p. 42 Chiral Guest Recognition, p. 236 Deoxycholic, Cholic, and Apocholic Acids, p. 441 Fluorescence Sensing of Anions, p. 566 Guanidinium-Based Anion Receptors, p. 615 Hydrogen Bonding, p. 658 lonophores, p. 760... [Pg.1370]


See other pages where Guests chiral recognition is mentioned: [Pg.219]    [Pg.150]    [Pg.236]    [Pg.237]    [Pg.238]    [Pg.239]    [Pg.240]    [Pg.241]    [Pg.243]    [Pg.244]    [Pg.251]    [Pg.347]    [Pg.422]    [Pg.438]    [Pg.1160]    [Pg.1335]    [Pg.1646]    [Pg.229]   
See also in sourсe #XX -- [ Pg.185 ]

See also in sourсe #XX -- [ Pg.3 , Pg.185 , Pg.190 ]

See also in sourсe #XX -- [ Pg.236 , Pg.244 ]




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