| Literature DB >> 33936251 |
Lucas J Karas1, Chia-Hua Wu1, Ranjita Das1, Judy I-Chia Wu1.
Abstract
Hydrogen bonding principles are at the core of supramolecular design. This overview features a discussion relating molecular structure to hydrogen bond strengths, highlighting the following electronic effects on hydrogen bonding: electronegativity, steric effects, electrostatic effects, π-conjugation, and network cooperativity. Historical developments, along with experimental and computational efforts, leading up to the birth of the hydrogen bond concept, the discovery of nonclassical hydrogen bonds (C-H…O, O-H…π, dihydrogen bonding), and the proposal of hydrogen bond design principles (e.g., secondary electrostatic interactions, resonance-assisted hydrogen bonding, and aromaticity effects) are outlined. Applications of hydrogen bond design principles are presented.Entities:
Keywords: aromaticity; hydrogen bonding; resonance-assisted hydrogen bonding; secondary electrostatic interactions
Year: 2020 PMID: 33936251 PMCID: PMC8087110 DOI: 10.1002/wcms.1477
Source DB: PubMed Journal: Wiley Interdiscip Rev Comput Mol Sci ISSN: 1759-0884