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Complexation, hydrogen bonding

Morokuma K 1977. Why Do Molecules Interact The Origin of Electron Donor-Acceptor Complexes, Hydrogen Bonding, and Proton Affinity. Accounts of Chemical Research 10 294-300. [Pg.181]

K-K Complexation Hydrogen bonding Inclusion Dipole stacking Steric interactions Anionic or cationic binding... [Pg.28]

This relatively new class of CSPs incorporates glycopeptides attached covalently to silica gel. These CSPs can be used in the normal phase, reversed phase, and polar organic modes in LC [62]. Various functional groups on the macrocyclic antibiotic molecule provide opportunities for tt-tt complexation, hydrogen bonding, and steric interactions between the analyte and the chiral selector. Association of the analyte... [Pg.309]

The interaction of the template with monomer and/or the propagating radical may involve solely Van der Waals forces or it may involve charge transfer complexation, hydrogen bonding, or ionic forces (Section 8.3.5.1). In other cases, the monomer is attached to the template through formal covalent bonds (Section 8.3.5.2). [Pg.437]

Dendrimers can be constructed from chemical species other than purely organic monomers. For example, they can be built up from metal branching centres such as ruthenium or osmium with multidentate ligands. The resulting molecules are known as metallodendrimers. Such molecules can retain their structure by a variety of mechanisms, including complexation, hydrogen bonding and ionic interactions. [Pg.135]

Harthcock M.A., Probing the complex hydrogen bonding stmeture of urethane block co-pol3miers and various acid containing copolymers using infra red spectroscopy. Polymer, 30, 1234, 1989. [Pg.160]

Platinum-thiourea complexes have been extensively studied because of their biological activity [54], but few have been used in catalysis. Neutral thioureas are able to coordinate to metal centres through their sulfur atom (Scheme 9) [55,56] monomeric (I) and oligomeric (II) species are known for Rh [57], and an X-ray structure has also been determined for the chiral complex III [58]. In many complexes hydrogen bonding has been observed... [Pg.239]

Fig. 7.4. Conformations of (a) free valinomycin and (b) of its potassium complex. The carbonyl oxygen atoms, P, P, M and M are in especially exposed positions, so that they can initiate complexation of potassium ion. During complexation, hydrogen bonds 1 and 2 are broken, so that oxygen atoms R and R can take part in the co-ordination of the cation. Further smaller conformation changes allow oxygen atoms Q and Q to partake in formation of new hydrogen bonds, the molecule thus attaining the final round shape (see [44a ]). (By permission of the American Association for Advancement of Science.)... Fig. 7.4. Conformations of (a) free valinomycin and (b) of its potassium complex. The carbonyl oxygen atoms, P, P, M and M are in especially exposed positions, so that they can initiate complexation of potassium ion. During complexation, hydrogen bonds 1 and 2 are broken, so that oxygen atoms R and R can take part in the co-ordination of the cation. Further smaller conformation changes allow oxygen atoms Q and Q to partake in formation of new hydrogen bonds, the molecule thus attaining the final round shape (see [44a ]). (By permission of the American Association for Advancement of Science.)...
Keywords Interpolymer complexation, Hydrogen bonding. Miscibility, MiscibUity-com-plexation transition, Fluorospectroscopy, Complex aggregate... [Pg.121]


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See also in sourсe #XX -- [ Pg.2 ]

See also in sourсe #XX -- [ Pg.2 , Pg.969 ]




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Acid/pyridine complexation, hydrogen bonding

Ammonia-water complex, hydrogen bonding

Aniline-ammonia complex, hydrogen bonds

Aniline-water complex, hydrogen bonds

Application to Hydrogen-Bonded Complexes

Association constants hydrogen-bonded complexes

Blue-shifted complexes, hydrogen bonds

Boron-hydrogen complex bond vibration

Clay complexes Hydrogen bonding

Complexation constants hydrogen-bond

Complexes Formed by Hydrogen Bonding

Dinuclear complexes, hydrogen bonding

Diruthenium complex, hydrogen bonding

Ethylene complexes, hydrogen bonding

Five-coordinate platinum complexes hydrogen bonds

Formate complexes, hydrogen-bonded

Hydride complexes hydrogen bonding

Hydride complexes metal-hydrogen bond

Hydrogen Bonding Interaction Used for Complexation to Rotaxane Structure

Hydrogen Bonding and Charge-Transfer Complexing

Hydrogen bond complex

Hydrogen bond mRNA-tRNA complex

Hydrogen bonded molecular complexes

Hydrogen bonded molecular complexes level

Hydrogen bonding ammonia complexes

Hydrogen bonding complex composition

Hydrogen bonding complex concentration

Hydrogen bonding complex dynamic mechanical property

Hydrogen bonding complex energy levels method

Hydrogen bonding complex, elongation

Hydrogen bonding computed complex formation energies

Hydrogen bonding iridium complex

Hydrogen bonding squaric acid complexes

Hydrogen bonding supramolecular complexes

Hydrogen bonding supramolecular copper complexes

Hydrogen bonding, 78 metal-dithiolene complexes

Hydrogen bonding—rotational complexes

Hydrogen bonds complex permittivity

Hydrogen bonds/bonding transition-metal complexes

Hydrogen complexes

Hydrogen-Bonded Complexes with Polar Organic Compounds

Hydrogen-bond complexes anion recognition

Hydrogen-bond complexes poly derivatives

Hydrogen-bond complexes structure

Hydrogen-bonded complexes

Hydrogen-bonded complexes

Hydrogen-bonded complexes equilibrium geometries

Hydrogen-bonded molecules complex permittivity

Hydrogen-bonding association model complexes

Hydrogen-bonding complex, solid propertie

Hydrogen-bonding complexes

Hydrogen-bonding complexes

Hydrogen-palladium bonds hydridopalladium complexes

Hydrogenation complexes

I 6 Hydrogen Bonds in Protein-Ligand Complexes

Intramolecular hydrogen bond complex

Lead complexes hydrogen bonding

Lyotropic Hydrogen-Bonded Complexes

Metal complexes hydrogen bonding

Pentachlorophenol, hydrogen-bond complexation

Phenol-Benzonitrile Hydrogen-bonded Complex

Phosphoric acid hydrogen-bonded complexes

Proton donors, hydrogen-bonded complexes

Rhodium complexes carbon-hydrogen bonds

Rhodium complexes hydrogen-bonded acceptors

Ruthenium biimidazole complexes, hydrogen bonding

Self-Assembly of Closed Complexes by Hydrogen Bonding

Self-assembly, hydrogen bonded complexes

Solute-solvent hydrogen-bonded complexe

Squarate complexes hydrogen bonding

Structure of Hydrogen-Bonded Complexes

Supermolecules hydrogen-bond complexes

Supramolecular Construction of Chelating Bidentate Ligand Libraries through Hydrogen Bonding Concept and Applications in Homogeneous Metal Complex Catalysis

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