International audienceRedox-active bidentate halogen bond donors based on halopyridinium groups as halogen-bond donating units were synthesized and their structures were elucidated by X-ray diffraction analyses and DFT calculations. Via reversible twofold reduction, these dicationic species can be transformed to neutral compounds which should be much weaker Lewis acids. The corresponding electrochemical data were obtained, and CV as well as UV-vis and NMR techniques were also used to determine binding constants of these halogen bond donors to halides. While all titrations agree on the relative order of binding strengths (with chloride being bound strongest), there are marked deviations in the overall affinity constants which are discussed. ...
The fact that iodine forms complexes with Lewis bases has been recognized since at least the middle ...
The halogen bond (XB) donor properties of neutral 1,4-diaryl-5-iodo-1,2,3-triazoles, are explored us...
Hydrogen bond donor catalysis represents a rapidly growing subfield of organocatalysis. While tradit...
In contrast to hydrogen bonding, which is firmly established in organocatalysis, there are still ver...
Bi- and tridentate polycationic halogen bond donors based on 5-iodo-1,2,3-triazolium groups have bee...
Halogen bonds are non-covalent attractive interactions between halogens that are covalently bound to...
As a classic non-covalent bond interaction, halogen bonding is well studied in material sciences and...
Halogen-bonding Catalysis By George Neuhaus Abstract Catalysis plays an important role in all field...
In recent years, the non-covalent interaction of halogen bonding (XB) has found increasing applicati...
Natural and synthetic molecules employ noncovalent interactions to engender molecular form and funct...
Noncovalent and reversible covalent interactions are of central importance to the fields of catalysi...
Using DFT calculations, we investigated the use of halogen bonding (XB) interactions to accelerate a...
Due to their electron deficiency, halonium ions act as particularly strong halogen bond donors. By a...
International audienceHerein we demonstrate the electrochemical activation and detection of intermol...
Preorganization is a powerful tool in supramolecular chemistry which has been utilized successfully ...
The fact that iodine forms complexes with Lewis bases has been recognized since at least the middle ...
The halogen bond (XB) donor properties of neutral 1,4-diaryl-5-iodo-1,2,3-triazoles, are explored us...
Hydrogen bond donor catalysis represents a rapidly growing subfield of organocatalysis. While tradit...
In contrast to hydrogen bonding, which is firmly established in organocatalysis, there are still ver...
Bi- and tridentate polycationic halogen bond donors based on 5-iodo-1,2,3-triazolium groups have bee...
Halogen bonds are non-covalent attractive interactions between halogens that are covalently bound to...
As a classic non-covalent bond interaction, halogen bonding is well studied in material sciences and...
Halogen-bonding Catalysis By George Neuhaus Abstract Catalysis plays an important role in all field...
In recent years, the non-covalent interaction of halogen bonding (XB) has found increasing applicati...
Natural and synthetic molecules employ noncovalent interactions to engender molecular form and funct...
Noncovalent and reversible covalent interactions are of central importance to the fields of catalysi...
Using DFT calculations, we investigated the use of halogen bonding (XB) interactions to accelerate a...
Due to their electron deficiency, halonium ions act as particularly strong halogen bond donors. By a...
International audienceHerein we demonstrate the electrochemical activation and detection of intermol...
Preorganization is a powerful tool in supramolecular chemistry which has been utilized successfully ...
The fact that iodine forms complexes with Lewis bases has been recognized since at least the middle ...
The halogen bond (XB) donor properties of neutral 1,4-diaryl-5-iodo-1,2,3-triazoles, are explored us...
Hydrogen bond donor catalysis represents a rapidly growing subfield of organocatalysis. While tradit...