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Design of hydrogen-bonding

We have referred to salt formation, design of hydrogen-bond frameworks, and use of charge-transfer interactions as possible techniques for crystal engineering. These techniques are certainly as applicable to two-component as to one-component systems. [Pg.193]

Abraham, M. H., Ibrahim, A., Zissimos, A. M., Zhao, Y. H., Comer, J. E., Reynolds, D. Application of hydrogen bonding calculations in property based dmg design. Drug Discov. Today 2002, 7, 1056-1063. [Pg.329]

The recognition of hydrogen bonds is an indispensable tool for designing molecular aggregates, in the field of crystal engineering29 as well as in the fields of supramolecular chemistry. [Pg.428]

Designing potential DNA intercalators has led to an investigation of a series of [Ru([9]aneS3)LCl] complexes where L is a didentate polypyridyl ligand. Structural data for the complexes are discussed in terms of hydrogen-bonded interactions and rr-stacking between extended aromatic systems, e.g., dppz and 4,7-Ph2phen. " ... [Pg.663]


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Bond design

Bonding designs

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