Imidazole-based compounds are widely found in natural products, synthetic molecules, and biomolecules. Noncovalent interactions between the imidazole ring and other functional groups play an important role in determining the function of diverse molecules. However, there is a limited understanding of the underlying noncovalent interactions between imidazoles and aromatic systems. In this work, we report physical-organic chemistry studies on 2-(2,6-diarylphenyl)-1H-imidazoles and their protonated forms to investigate the noncovalent interactions between the central imidazole ring and two flanking aromatic rings possessing substituents at the para/meta position. Hammett analysis revealed that pKavalues and proton affinities correlate well with...
Energetically favorable cation−π interactions play important roles in numerous molecular recognition...
Aromatic rings form energetically favorable interactions with many polar groups in chemical and biol...
Ionic liquids (ILs) are thermally and chemically stable and have adjustable structures, which gives ...
Imidazole-based compounds are widely found in natural products, synthetic molecules, and biomolecule...
Molecular recognition between polar groups and aromatic molecules is fundamentally important to rati...
The interaction between imidazolium cations and coordinating anions is investigated through the anio...
The interaction between imidazolium cations and coordinating anions is investigated through the anio...
Investigations dealing with N-heterocyclic carbenes and their derivatives are usually centered on th...
Investigations dealing with N-heterocyclic carbenes and their derivatives are usually centered on th...
Energetically favorable cation-π interactions play important roles in numerous molecular recognition...
Materials containing bistable N-H⋯N hydrogen bonds, such as imidazole crystals, show promise for app...
Materials containing bistable N-H⋯N hydrogen bonds, such as imidazole crystals, show promise for app...
Materials containing bistable N-Hâ?¯N hydrogen bonds, such as imidazole crystals, show promise for a...
Energetically favorable cation-pi interactions play important roles in numerous molecular recognitio...
Energetically favorable cation-pi interactions play important roles in numerous molecular recognitio...
Energetically favorable cation−π interactions play important roles in numerous molecular recognition...
Aromatic rings form energetically favorable interactions with many polar groups in chemical and biol...
Ionic liquids (ILs) are thermally and chemically stable and have adjustable structures, which gives ...
Imidazole-based compounds are widely found in natural products, synthetic molecules, and biomolecule...
Molecular recognition between polar groups and aromatic molecules is fundamentally important to rati...
The interaction between imidazolium cations and coordinating anions is investigated through the anio...
The interaction between imidazolium cations and coordinating anions is investigated through the anio...
Investigations dealing with N-heterocyclic carbenes and their derivatives are usually centered on th...
Investigations dealing with N-heterocyclic carbenes and their derivatives are usually centered on th...
Energetically favorable cation-π interactions play important roles in numerous molecular recognition...
Materials containing bistable N-H⋯N hydrogen bonds, such as imidazole crystals, show promise for app...
Materials containing bistable N-H⋯N hydrogen bonds, such as imidazole crystals, show promise for app...
Materials containing bistable N-Hâ?¯N hydrogen bonds, such as imidazole crystals, show promise for a...
Energetically favorable cation-pi interactions play important roles in numerous molecular recognitio...
Energetically favorable cation-pi interactions play important roles in numerous molecular recognitio...
Energetically favorable cation−π interactions play important roles in numerous molecular recognition...
Aromatic rings form energetically favorable interactions with many polar groups in chemical and biol...
Ionic liquids (ILs) are thermally and chemically stable and have adjustable structures, which gives ...